{"version":1,"type":"rich","provider_name":"Libsyn","provider_url":"https:\/\/www.libsyn.com","height":90,"width":600,"title":"EVSN - Betelgeuse: Smaller &amp; Closer Than Previously Thought\u2026 What?","description":"From October 19, 2020. Hosted by: Dr. Pamela L. Gay (@CosmoQuest) Today\u2019s top story brings back our favorite red giant star, Betelgeuse. A new paper published in&amp;nbsp;The Astrophysical Journal&amp;nbsp;(ApJ) with lead author Dr. Meridith Joyce looks at Betelgeuse as a pulsating variable star and uses atmospheric physics to bring us new insights on what the red giant is up to. &amp;nbsp; This paper combines new observations with new computer models to derive the star\u2019s mass and size from its outward behavior in much the same way that one might derive the size of a jug based on what notes can be created by blowing across its opening. Different sized objects naturally resonate in specific ways. By understanding how Betelgeuse pulsates in the fundamental mode and first overtone mode \u2013 those first two pitches you can make with your bottle \u2013 they were able to work backward to figure out Betelgeuse\u2019s physical size. This method let them then figure out more accurately the star\u2019s distance because we know how big it appears on the sky, and there is a simple mathematical relationship between how big something is and how big it appears.&amp;nbsp; &amp;nbsp; Our current estimates had been based on&amp;nbsp;Hipparcos&amp;nbsp;measurements of how Betelgeuse appears to move relative to background objects when the Earth moves around the Sun. This technique, called parallax, can be super useful, but, trying to measure how much an object shifts, when that object is a blobby star like Betelgeuse, can be a challenge! Betelgeuse appears to be about 42 microarcseconds (mas) across and seems to shift just 5.95+0.58 or -0.85 mas. This is a really hard measurement, and Betelgeuse hasn\u2019t been looked at yet with&amp;nbsp;Gaia.&amp;nbsp; &amp;nbsp; By working from the theoretical size they got from its pulsation modes, and calculating a new distance, this team found that the lower edge of that error in the distance appears to be accurate, putting Betelgeuse just 530 lightyears away. This is 25% of the distance from the prior estimate, but as I said, it\u2019s within error. This closer distance makes Betelgeuse a bit smaller; it appears to be 750 times the radius of the Sun. Nevertheless, it still probably started with 20+ solar masses of material, and it will still explode in about 100,000 years. At this point, they believe, it is still burning helium in its core and is nowhere near going boom. &amp;nbsp; It\u2019s always cool when completely different techniques can narrow in on more precise values. This shows us once again that there is no one way to do science. &amp;nbsp; We've added a new way to donate to 365 Days of Astronomy to support editing, hosting, and production costs.&amp;nbsp; Just visit: https:\/\/www.patreon.com\/365DaysOfAstronomy and donate as much as you can! Share the podcast with your friends and send the Patreon link to them too!&amp;nbsp; Every bit helps! Thank you! ------------------------------------ Do go visit http:\/\/www.redbubble.com\/people\/CosmoQuestX\/shop for cool Astronomy Cast and CosmoQuest t-shirts, coffee mugs and other awesomeness! http:\/\/cosmoquest.org\/Donate This show is made possible through your donations.&amp;nbsp; Thank you! (Haven't donated? It's not too late! Just click!) ------------------------------------ The 365 Days of Astronomy Podcast is produced by the Planetary Science Institute. http:\/\/www.psi.edu Visit us on the web at 365DaysOfAstronomy.org or email us at info@365DaysOfAstronomy.org. ","author_name":"The 365 Days of Astronomy","author_url":"http:\/\/www.365DaysOfAstronomy.org\/","html":"<iframe title=\"Libsyn Player\" style=\"border: none\" src=\"\/\/html5-player.libsyn.com\/embed\/episode\/id\/42947308\/height\/90\/theme\/custom\/thumbnail\/yes\/direction\/forward\/render-playlist\/no\/custom-color\/88AA3C\/\" height=\"90\" width=\"600\" scrolling=\"no\"  allowfullscreen webkitallowfullscreen mozallowfullscreen oallowfullscreen msallowfullscreen><\/iframe>","thumbnail_url":"https:\/\/assets.libsyn.com\/secure\/content\/206402273"}