{"id":73336,"date":"2017-08-26T15:05:35","date_gmt":"2017-08-26T14:05:35","guid":{"rendered":"http:\/\/www.astb.se\/cassiopeiabloggen\/?p=73336"},"modified":"2017-08-27T07:16:53","modified_gmt":"2017-08-27T06:16:53","slug":"nr-90-2017","status":"publish","type":"post","link":"https:\/\/www.astb.se\/cassiopeiabloggen\/2017\/08\/26\/nr-90-2017\/","title":{"rendered":"Nr 90 2017"},"content":{"rendered":"<h2>\n\t<strong>Variablerna i Plejaderna studerade fr&aring;n &Aring;rhus horisont<\/strong><br \/>\n<\/h2>\n<div style=\"position: absolute; left: -99999px;\">\n<div class=\"first-block\">\n<p>\n\t\t\tThe Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world. Now Dr Tim White of the Stellar Astrophysics Centre at Aarhus University and his team of Danish and international astronomers have demonstrated a powerful new technique for observing stars such as these, which are ordinarily far too bright to look at with high performance telescopes. Their work is published in the <i>Monthly Notices of the Royal Astronomical Society<\/i>.\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<\/p><\/div>\n<section class=\"article-banner first-banner\">\n<div data-google-query-id=\"CLG6jKbt9NUCFcKWsgodNgsHrQ\" id=\"div-gpt-ad-1449240174198-2\">\n<div id=\"google_ads_iframe_\/4988204\/Phys_Story_InText_Box_0__container__\" style=\"border: 0pt none;\">\n\t\t\t\t&nbsp;\n\t\t\t<\/div>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<\/p><\/div>\n<\/section>\n<p>\n\t\tUsing a new algorithm to enhance observations from the Kepler Space Telescope in its K2 Mission, the team has performed the most detailed study yet of the variability of these <a class=\"textTag\" href=\"https:\/\/phys.org\/tags\/stars\/\" rel=\"tag\">stars<\/a>. Satellites such as Kepler are engineered to search for planets orbiting distant stars by looking for the dip in brightness as the planets pass in front, and also to do asteroseismology, studying the structure and evolution of stars as revealed by changes in their brightness.\n\t<\/p>\n<p>\n\t\tBecause the Kepler mission was designed to look at thousands of faint stars at a time, some of the brightest stars are actually too bright to observe. Aiming a beam of light from a bright star at a point on a camera detector will cause the central pixels of the star&#39;s image to be saturated, which causes a very significant loss of precision in the measurement of the total brightness of the star. This is the same process which causes a loss of dynamic range on ordinary digital cameras, which cannot see faint and bright detail in the same exposure.\n\t<\/p>\n<p>\n\t\t&quot;The solution to observing bright stars with Kepler turned out to be rather simple,&quot; said lead author Dr Tim White. &quot;We&#39;re chiefly concerned about relative, rather than absolute, changes in brightness. We can just measure these changes from nearby unsaturated pixels, and ignore the saturated areas altogether.&quot;\n\t<\/p>\n<p>\n\t\tBut changes in the satellite&#39;s motion and slight imperfections in the detector can still hide the signal of <a class=\"textTag\" href=\"https:\/\/phys.org\/tags\/stellar+variability\/\" rel=\"tag\">stellar variability<\/a>. To overcome this, the authors developed a new technique to weight the contribution of each pixel to find the right balance where instrumental effects are cancelled out, revealing the true stellar variability. This new method has been named halo photometry, a simple and fast algorithm the authors have released as free open-source software.\n\t<\/p>\n<figure class=\"image-block\">\n<div class=\"image-block-ins\">\n\t\t\t<a href=\"https:\/\/3c1703fe8d.site.internapcdn.net\/newman\/gfx\/news\/2017\/1-keplersatell.jpg\" rel=\"lightbox\" title=\"The unique brightness fluctuations of each star reveal clues about their physical properties such as their size and rotation rate. Most of the bright stars in the Pleiades are a type of variable star called a slowly-pulsating B star, but Maia is different, and shows evidence of a large chemical spot that crosses its surface as the star rotates with a ten day period. Credit: Aarhus University \/ T. White\"><img decoding=\"async\" alt=\"Kepler satellite discovers variability in the Seven Sisters\" src=\"https:\/\/3c1703fe8d.site.internapcdn.net\/newman\/csz\/news\/800\/2017\/1-keplersatell.jpg\" \/> <\/a>\n\t\t<\/div>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p><figcaption class=\"image-block-caption\"> The unique brightness fluctuations of each star reveal clues about their physical properties such as their size and rotation rate. Most of the bright stars in the Pleiades are a type of variable star called a slowly-pulsating B star, but &hellip;<a class=\"caption-expand\" href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html\">more<\/a><\/figcaption><\/figure>\n<p>\n\t\tMost of the seven stars are revealed to be <a href=\"https:\/\/en.wikipedia.org\/wiki\/Slowly_pulsating_B-type_star\">slowly-pulsating B stars<\/a>, a class of variable star in which the star&#39;s brightness changes with day-long periods. The frequencies of these pulsations are key to exploring some of the poorly understood processes in the core of these stars.\n\t<\/p>\n<div class=\"article-banner\" id=\"ad-g3\">\n\t\t&nbsp;\n\t<\/div>\n<p>\n\t\tThe seventh star, Maia, is different: it varies with a regular period of 10 days. Previous studies have shown that Maia belongs to a class of stars with abnormal surface concentrations of some chemical elements such as manganese. To see if these things were related, a series of spectroscopic observations were taken with the Hertzsprung SONG Telescope.\n\t<\/p>\n<p>\n\t\t&quot;What we saw was that the brightness changes seen by Kepler go hand-in-hand with changes in the strength of manganese absorption in Maia&#39;s atmosphere,&quot; said Dr Victoria Antoci, a co-author of the work and Assistant Professor at the Stellar Astrophysics Centre, Aarhus University. &quot;We conclude that the variations are caused by a large chemical spot on the surface of the star, which comes in and out of view as the star rotates with a ten day period.&quot;\n\t<\/p>\n<p>\n\t\t&quot;Sixty years ago, astronomers had thought they could see variability in Maia with periods of a few hours and suggested this was the first of a whole new class of variable stars they called &#39;Maia Variables&#39;,&quot; White said, &quot;but our new observations show that Maia is not itself a Maia Variable!&quot;\n\t<\/p>\n<p>\n\t\tNo signs of exoplanetary transits were detected in this study, but the authors show that their new algorithm can attain the precision that will be needed for Kepler and future space telescopes such as the Transiting Exoplanet Survey Satellite (TESS) to detect planets transiting stars as bright as our neighbouring star Alpha Centauri. These nearby bright stars are the best targets for future missions and facilities such as the James Webb Space Telescope, which is due to launch in late 2018.\n\t<\/p>\n<p class=\"news-relevant\" itemscope=\"\" itemtype=\"http:\/\/schema.org\/WebPage\">\n\t\t<a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#\" id=\"inl-rel-href\"><img decoding=\"async\" alt=\"\" class=\"toolsicon ic-rel\" height=\"16\" src=\"https:\/\/cf3e497594.site.internapcdn.net\/tmpl\/v5\/img\/1x1.gif\" width=\"14\" \/><\/a> <b>Explore further:<\/b> <a href=\"https:\/\/phys.org\/news\/2016-12-solar-like-oscillations-stars.html\" itemprop=\"relatedLink\">Solar-like oscillations in other stars<\/a>\n\t<\/p>\n<footer class=\"post-floor clearfix\">\n<div class=\"post-copyright\">\n<p>\n\t\t\t\t<b>Journal reference:<\/b> <a class=\"textTag\" href=\"https:\/\/phys.org\/journals\/monthly-notices-of-the-royal-astronomical-society\/\" rel=\"news\">Monthly Notices of the Royal Astronomical Society<\/a> <a class=\"extra\" href=\"https:\/\/phys.org\/journals\/monthly-notices-of-the-royal-astronomical-society\/\" rel=\"news\"><img decoding=\"async\" alt=\"search and more info\" class=\"toolsicon isrc\" height=\"25\" src=\"https:\/\/cf3e497594.site.internapcdn.net\/tmpl\/v5\/img\/img-dot.gif\" title=\"search and more info\" width=\"25\" \/><\/a> <a class=\"extra\" href=\"http:\/\/www.wiley.com\/bw\/journal.asp?ref=0035-8711\" target=\"_blank\"><img decoding=\"async\" alt=\"website\" class=\"toolsicon iwbs\" height=\"25\" src=\"https:\/\/cf3e497594.site.internapcdn.net\/tmpl\/v5\/img\/img-dot.gif\" title=\"website\" width=\"25\" \/><\/a>\n\t\t\t<\/p>\n<p>\n\t\t\t\t<b>Provided by:<\/b> <a class=\"textTag\" href=\"https:\/\/phys.org\/partners\/royal-astronomical-society\/\" rel=\"news\">Royal Astronomical Society<\/a>\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<\/p><\/div>\n<\/footer>\n<p>\n\t\tRead more at: <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp\">https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp<\/a>\n\t<\/p>\n<\/div>\n<p>\n\tGrattis till v&aring;ra danska v&auml;nner borta i &Aring;rhus, Jylland, med astronomen <strong>Tim White<\/strong> i spetsen som lyckats med bedriften att <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html\">med Kepler-sonden avlocka Plejadernas variabla karakt&auml;rerer.<\/a>\n<\/p>\n<p>\n\tKepler-sonden &auml;r egentligen f&ouml;r k&auml;nslig f&ouml;r att studera en s&aring; ljus (p&aring; himlavalvet) &ouml;ppen stj&auml;rnhop som Plejaderna, men det g&aring;r att lura optiken och undg&aring; att stj&auml;rnljuset dr&auml;nker, &quot;saturerar&quot;, pixlarna i synf&auml;ltet. Tekniken kallas halofotometri och beskrivs som lika genial som enkel.\n<\/p>\n<p>\n\t<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/keplersatell-e1503750096113.jpg\"><img decoding=\"async\" alt=\"keplersatell\" class=\"aligncenter size-full wp-image-73358\" height=\"360\" src=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/keplersatell-e1503750096113.jpg\" width=\"600\" \/><\/a>\n<\/p>\n<p style=\"text-align: center;\">\n\t<em>Bildk&auml;lla:<strong> <\/strong>NASA \/ Aarhus University \/ T. White <\/em>\n<\/p>\n<p>\n\tSpeciellt fokus i unders&ouml;kningen &auml;r p&aring; den sjunde stj&auml;rnan, Maia, som har en period p&aring; ca 10 dygn. Med hj&auml;lp av andra teleskop typ instrumentet kallat Hertzsprung SONG Telescope kunde spektroskopiska fenomen i atmosf&auml;ren studeras och astronomerna har kunnat f&ouml;lja hur stj&auml;rnans variabilitet och stj&auml;rnatmosf&auml;rens absorption av mangan g&aring;r hand i hand.\n<\/p>\n<p>\n\tResultatet? Att Maias ljusstyrkevariation beror p&aring; &quot;stora kemiska fl&auml;ckar&quot; som dyker upp i takt med stj&auml;rnans axelrotation p&aring; 10 dagar.\n<\/p>\n<p>\n\tDet anm&auml;rkningsv&auml;rda &auml;r att f&ouml;r m&aring;nga &aring;r sedan diskuterade astronomerna en helt ny&nbsp;&nbsp;&nbsp; variabelklass som kallades just &quot;Maiavariabler&quot;. Nu visar det sig att Maia sj&auml;lv inte &auml;r en &#8211; Maia-variabel!\n<\/p>\n<div style=\"position: absolute; left: -99999px;\">\n<div class=\"first-block\">\n<p>\n\t\t\the Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world. Now Dr Tim White of the Stellar Astrophysics Centre at Aarhus University and his team of Danish and international astronomers have demonstrated a powerful new technique for observing stars such as these, which are ordinarily far too bright to look at with high performance telescopes. Their work is published in the <i>Monthly Notices of the Royal Astronomical Society<\/i>.\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<\/p><\/div>\n<section class=\"article-banner first-banner\">\n<div data-google-query-id=\"CKXS7sDu9NUCFZQYGAodNnIExA\" id=\"div-gpt-ad-1449240174198-2\">\n<div id=\"google_ads_iframe_\/4988204\/Phys_Story_InText_Box_0__container__\" style=\"border: 0pt none; display: inline-block; width: 300px; height: 250px;\">\n\t\t\t\t&nbsp;\n\t\t\t<\/div>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<p>\n\t\t\t\t&nbsp;\n\t\t\t<\/p>\n<\/p><\/div>\n<\/section>\n<p>\n\t\tUsing a new algorithm to enhance observations from the Kepler Space Telescope in its K2 Mission, the team has performed the most detailed study yet of the variability of these <a class=\"textTag\" href=\"https:\/\/phys.org\/tags\/stars\/\" rel=\"tag\">stars<\/a>. Satellites such as Kepler are engineered to search for planets orbiting distant stars by looking for the dip in brightness as the planets pass in front, and also to do asteroseismology, studying the structure and evolution of stars as revealed by changes in their brightness.\n\t<\/p>\n<p>\n\t\tBecause the Kepler mission was designed to look at thousands of faint stars at a time, some of the brightest stars are actually too bright to observe. Aiming a beam of light from a bright star at a point on a camera detector will cause the central pixels of the star&#39;s image to be saturated, which causes a very significant loss of precision in the measurement of the total brightness of the star. This is the same process which causes a loss of dynamic range on ordinary digital cameras, which cannot see faint and bright detail in the same exposure.\n\t<\/p>\n<p>\n\t\t&quot;The solution to observing bright stars with Kepler turned out to be rather simple,&quot; said lead author Dr Tim White. &quot;We&#39;re chiefly concerned about relative, rather than absolute, changes in brightness. We can just measure these changes from nearby unsaturated pixels, and ignore the saturated areas altogether.&quot;\n\t<\/p>\n<p>\n\t\tBut changes in the satellite&#39;s motion and slight imperfections in the detector can still hide the signal of <a class=\"textTag\" href=\"https:\/\/phys.org\/tags\/stellar+variability\/\" rel=\"tag\">stellar variability<\/a>. To overcome this, the authors developed a new technique to weight the contribution of each pixel to find the right balance where instrumental effects are cancelled out, revealing the true stellar variability. This new method has been named halo photometry, a simple and fast algorithm the authors have released as free open-source software.\n\t<\/p>\n<figure class=\"image-block\">\n<div class=\"image-block-ins\">\n\t\t\t<a href=\"https:\/\/3c1703fe8d.site.internapcdn.net\/newman\/gfx\/news\/2017\/1-keplersatell.jpg\" rel=\"lightbox\" title=\"The unique brightness fluctuations of each star reveal clues about their physical properties such as their size and rotation rate. Most of the bright stars in the Pleiades are a type of variable star called a slowly-pulsating B star, but Maia is different, and shows evidence of a large chemical spot that crosses its surface as the star rotates with a ten day period. Credit: Aarhus University \/ T. White\"><img decoding=\"async\" alt=\"Kepler satellite discovers variability in the Seven Sisters\" src=\"https:\/\/3c1703fe8d.site.internapcdn.net\/newman\/csz\/news\/800\/2017\/1-keplersatell.jpg\" \/> <\/a>\n\t\t<\/div>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p><figcaption class=\"image-block-caption\"> The unique brightness fluctuations of each star reveal clues about their physical properties such as their size and rotation rate. Most of the bright stars in the Pleiades are a type of variable star called a slowly-pulsating B star, but &hellip;<a class=\"caption-expand\" href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html\">more<\/a><\/figcaption><\/figure>\n<p>\n\t\tMost of the seven stars are revealed to be <a href=\"https:\/\/en.wikipedia.org\/wiki\/Slowly_pulsating_B-type_star\">slowly-pulsating B stars<\/a>, a class of variable star in which the star&#39;s brightness changes with day-long periods. The frequencies of these pulsations are key to exploring some of the poorly understood processes in the core of these stars.\n\t<\/p>\n<div class=\"article-banner\" id=\"ad-g3\">\n\t\t&nbsp;\n\t<\/div>\n<p>\n\t\tThe seventh star, Maia, is different: it varies with a regular period of 10 days. Previous studies have shown that Maia belongs to a class of stars with abnormal surface concentrations of some chemical elements such as manganese. To see if these things were related, a series of spectroscopic observations were taken with the Hertzsprung SONG Telescope.\n\t<\/p>\n<p>\n\t\t&quot;What we saw was that the brightness changes seen by Kepler go hand-in-hand with changes in the strength of manganese absorption in Maia&#39;s atmosphere,&quot; said Dr Victoria Antoci, a co-author of the work and Assistant Professor at the Stellar Astrophysics Centre, Aarhus University. &quot;We conclude that the variations are caused by a large chemical spot on the surface of the star, which comes in and out of view as the star rotates with a ten day period.&quot;\n\t<\/p>\n<p>\n\t\t&quot;Sixty years ago, astronomers had thought they could see variability in Maia with periods of a few hours and suggested this was the first of a whole new class of variable stars they called &#39;Maia Variables&#39;,&quot; White said, &quot;but our new observations show that Maia is not itself a Maia Variable!&quot;\n\t<\/p>\n<p>\n\t\tNo signs of exoplanetary transits were detected in this study, but the authors show that their new algorithm can attain the precision that will be needed for Kepler and future space telescopes such as the Transiting Exoplanet Survey Satellite (TESS) to detect planets transiting stars as bright as our neighbouring star Alpha Centauri. These nearby bright stars are the best targets for future missions and facilities such as the James Webb Space Telescope, which is due to launch in late 2018.\n\t<\/p>\n<p>\n\t\tRead more at: <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp\">https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp<\/a>\n\t<\/p>\n<\/div>\n<div style=\"position: absolute; left: -99999px;\">\n\tThe Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world. Now Dr Tim White of the Stellar Astrophysics Centre at Aarhus University and his team of Danish and international astronomers have demonstrated a powerful new technique for observing stars such as these, which are ordinarily far too bright to look at with high performance telescopes. Their work is published in the <i>Monthly Notices of the Royal Astronomical Society<\/i>.<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\tRead more at: <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp\">https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp<\/a>\n\t<\/p>\n<\/div>\n<div style=\"position: absolute; left: -99999px;\">\n\tThe Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world. Now Dr Tim White of the Stellar Astrophysics Centre at Aarhus University and his team of Danish and international astronomers have demonstrated a powerful new technique for observing stars such as these, which are ordinarily far too bright to look at with high performance telescopes. Their work is published in the <i>Monthly Notices of the Royal Astronomical Society<\/i>.<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\t&nbsp;\n\t<\/p>\n<p>\n\t\tRead more at: <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp\">https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp<\/a>\n\t<\/p>\n<div style=\"position: absolute; left: -99999px;\">\n\t\tThe Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world. Now Dr Tim White of the Stellar Astrophysics Centre at Aarhus University and his team of Danish and international astronomers have demonstrated a powerful new technique for observing stars such as these, which are ordinarily far too bright to look at with high performance telescopes. Their work is published in the <i>Monthly Notices of the Royal Astronomical Society<\/i>.<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\tRead more at: <a href=\"https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp\">https:\/\/phys.org\/news\/2017-08-kepler-satellite-variability-sisters.html#jCp<\/a>\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<p>\n\t\t\t&nbsp;\n\t\t<\/p>\n<\/p><\/div>\n<\/div>\n<h2>\n\t<strong>Neptunus fr&aring;n Saturnus<\/strong><br \/>\n<\/h2>\n<p>\n\tDet kanske inte &auml;r mycket till bild, men lite historisk &auml;r den:\n<\/p>\n<p>\n\tLjusprickarna f&ouml;rest&auml;ller Neptunus med m&aring;nen Triton &#8211; sedda fr&aring;n Saturnus:\n<\/p>\n<p>\n\t<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/PIA21629_fig1_thumb.jpg\"><img decoding=\"async\" alt=\"PIA21629_fig1_thumb\" class=\"aligncenter size-full wp-image-73341\" height=\"200\" src=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/PIA21629_fig1_thumb.jpg\" width=\"243\" srcset=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/PIA21629_fig1_thumb.jpg 243w, https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/PIA21629_fig1_thumb-200x164.jpg 200w\" sizes=\"(max-width: 243px) 100vw, 243px\" \/><\/a>\n<\/p>\n<p style=\"text-align: center;\">\n\t<em>Bildk&auml;lla: NASA\/JPL-Caltech\/Space Science Institute<\/em>\n<\/p>\n<p>\n\tCassini-sonden &auml;r inne p&aring; slutvarven runt Saturnus och f&aring;r ibland in annat i siktet. Som h&auml;r.\n<\/p>\n<p>\n\tCassini har under sitt uppdrag fotograferat samtliga planeter f&ouml;rutom Merkurius och Pluto. Merkurius ligger f&ouml;r n&auml;ra solen och skulle Cassini rikta sina instrument dit s&aring; f&ouml;rst&ouml;rs instrumenten.\n<\/p>\n<p>\n\tDokumentationen av Neptunus &auml;r fr&aring;n 17 augusti i &aring;r, d&aring;&nbsp; 4,38 miljarder km skiljde planeterna &aring;t. <a href=\"https:\/\/photojournal.jpl.nasa.gov\/catalog\/PIA21629\">NASA:s Photojournal h&auml;r.<\/a>\n<\/p>\n<h2>\n\t<strong>Nya data om kometernas befolkningsstatistik<\/strong><br \/>\n<\/h2>\n<p>\n\t<span style=\"font-size: small;\"><a href=\"http:\/\/www.psi.edu\/news\/meowisecomets\">En ny studie av kometernas liv och leverne<\/a> visar att de l&aring;ngperiodiska kometerna i genomsnitt &auml;r st&ouml;rre &auml;n kortperiodarna. Men inte bara det: Det finns fler, &aring;tminstone sju ggr fler l&aring;ngperiodiska kometer st&ouml;rre &auml;n en kilometer tv&auml;rs&ouml;ver i v&aring;rt solsystem &auml;n tidigare trotts.<\/span>\n<\/p>\n<h2>\n\t<strong>G&ouml;ran Strand inte bara f&ouml;rm&ouml;rkelsernas man&#8230;<\/strong><br \/>\n<\/h2>\n<p>\n\tUSA-f&ouml;rm&ouml;rkelsen fotades &quot;naturligtvis&quot; av v&aring;r specielle W-bloggs- och fotbollsv&auml;n <strong>G&ouml;ran &quot;Astrografen&quot; Strand, <\/strong>verksam p&aring; Fr&ouml;s&ouml;n. <a href=\"https:\/\/www.facebook.com\/fotografgoranstrand\/?hc_ref=ARQAeWM0L8j4Ufeg-FNbEpYMpLSy4DbaQRYeTXzMAtL_7cGP9WGDI-VQBcSuJKw7ano&amp;fref=nf\">P&aring; fb har han publicerat denna skarpa solf&ouml;rm&ouml;rkelsebild<\/a>, tagen fr&aring;n Brasstown Valley Resort utanf&ouml;r Georgia i Atlanta:\n<\/p>\n<p>\n\t<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/21032528_10155452071090560_1707722870774932010_n-e1503747752424.jpg\"><img decoding=\"async\" alt=\"21032528_10155452071090560_1707722870774932010_n\" class=\"aligncenter size-full wp-image-73345\" height=\"441\" src=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/21032528_10155452071090560_1707722870774932010_n-e1503747752424.jpg\" width=\"587\" \/><\/a>\n<\/p>\n<p style=\"text-align: center;\">\n\t<em>Foto: G&ouml;ran Strand<\/em>\n<\/p>\n<p>\n\tEftersom redaktionen p&aring; W-bloggen &auml;ven &auml;r fotbollstokig, s&aring; &auml;r det klart att vi grattar &Ouml;stersunds fotbollsstolthet till framg&aring;ngarna p&aring; fotbollsplanen. Det &auml;r ju som om Rekordmagasinet &aring;teruppst&aring;tt!\n<\/p>\n<p>\n\tG&ouml;ran &auml;r naturligtvs med sin hustru en entusiastisk &Ouml;FK-beundrare, och vi har inte sett slutet p&aring; &Auml;ventyret &auml;nnu. Fotbollsf&ouml;nstret norr&ouml;ver st&aring;r p&aring; vid gavel.\n<\/p>\n<p>\n\t<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/5068337-e1503748202558.png\"><img decoding=\"async\" alt=\"5068337\" class=\"aligncenter size-full wp-image-73350\" height=\"300\" src=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/5068337-e1503748202558.png\" width=\"300\" \/><\/a>\n<\/p>\n<h2>\n\t<strong>Snygg solnedg&aring;ng\/uppg&aring;ng&#8230;<\/strong><br \/>\n<\/h2>\n<p>\n\tJag vet inte var, n&auml;r och hur denna fantastiska bild tillkommit, men fotot kommer fr&aring;n min gammeldanske v&auml;n <strong>Rolf &quot;Rolfen&quot; Sj&ouml;str&ouml;m<\/strong>: En ringformig f&ouml;rm&ouml;rkelse synlig &ouml;ver &ouml;ppet hav.\n<\/p>\n<p>\n\tBilden har ju inte med&nbsp; den senaste US-f&ouml;rm&ouml;rkelsen att&nbsp; g&ouml;ra, det kan vi sl&aring; fast. Den som vet n&aring;got, h&ouml;r av er.\n<\/p>\n<p>\n\t<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/IMG_8751-2-e1503813713616.jpg\"><img decoding=\"async\" alt=\"IMG_8751-2\" class=\"aligncenter size-full wp-image-73376\" height=\"667\" src=\"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-content\/uploads\/2017\/08\/IMG_8751-2-e1503813713616.jpg\" width=\"400\" \/><\/a>\n<\/p>\n<p style=\"text-align: center;\">\n\t<em>Bildk&auml;lla: ????<\/em><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Variablerna i Plejaderna studerade fr&aring;n &Aring;rhus horisont The Seven Sisters, as they were known to the ancient Greeks, are now known to modern astronomers as the Pleiades star cluster &ndash; a set of stars which are visible to the naked eye and have been studied for thousands of years by cultures all over the world.&hellip;&nbsp;<a href=\"https:\/\/www.astb.se\/cassiopeiabloggen\/2017\/08\/26\/nr-90-2017\/\" rel=\"bookmark\">L\u00e4s mer &raquo;<span class=\"screen-reader-text\">Nr 90 2017<\/span><\/a><\/p>\n","protected":false},"author":2,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"rop_custom_images_group":[],"rop_custom_messages_group":[],"rop_publish_now":"initial","rop_publish_now_accounts":[],"rop_publish_now_history":[],"rop_publish_now_status":"pending","neve_meta_sidebar":"","neve_meta_container":"","neve_meta_enable_content_width":"","neve_meta_content_width":0,"neve_meta_title_alignment":"","neve_meta_author_avatar":"","neve_post_elements_order":"","neve_meta_disable_header":"","neve_meta_disable_footer":"","neve_meta_disable_title":"","footnotes":""},"categories":[3],"tags":[],"_links":{"self":[{"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/posts\/73336"}],"collection":[{"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/posts"}],"about":[{"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/types\/post"}],"author":[{"embeddable":true,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/users\/2"}],"replies":[{"embeddable":true,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/comments?post=73336"}],"version-history":[{"count":33,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/posts\/73336\/revisions"}],"predecessor-version":[{"id":73381,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/posts\/73336\/revisions\/73381"}],"wp:attachment":[{"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/media?parent=73336"}],"wp:term":[{"taxonomy":"category","embeddable":true,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/categories?post=73336"},{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/www.astb.se\/cassiopeiabloggen\/wp-json\/wp\/v2\/tags?post=73336"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}