Baryogenesis is the physical process that is hypothesized to have taken place during the early universe to produce baryonic asymmetry, i.e. the imbalance of matter (baryons) and antimatter (antibaryons) in the observed universe.
One of the outstanding problems in modern physics is the predominance of matter over antimatter in the universe. The universe, as a whole, seems to have a nonzero positive baryon number density. Since it is assumed in cosmology that the particles we see were created using the same physics we measure today, it would normally be expected that the overall baryon number should be zero, as matter and antimatter should have been created in equal amounts.
After most of the matter and antimatter was annihilated, what remained was all the baryonic matter in the current universe, along with a much greater number of bosons. Experiments reported in 2010 at Fermilab, however, seem to show that this imbalance is much greater than previously assumed.
These experiments involved a series of particle collisions and found that the amount of generated matter was approximately 1% larger than the amount of generated antimatter. The reason for this discrepancy is not yet known.
Most grand unified theories explicitly break the baryon number symmetry, which would account for this discrepancy, typically invoking reactions mediated by very massive X bosons (X) or massive Higgs bosons (H0).
The rate at which these events occur is governed largely by the mass of the intermediate X or H0 particles, so by assuming these reactions are responsible for the majority of the baryon number seen today, a maximum mass can be calculated above which the rate would be too slow to explain the presence of matter today. These estimates predict that a large volume of material will occasionally exhibit a spontaneous proton decay, which has not been observed.
Therefore, the imbalance between matter and antimatter remains a mystery.
Baryogenesis theories are based on different descriptions of the interaction between fundamental particles. Two main theories are electroweak baryogenesis (standard model), which would occur during the electroweak epoch, and the GUT baryogenesis, which would occur during or shortly after the grand unification epoch. Quantum field theory and statistical physics are used to describe such possible mechanisms.
Baryogenesis is followed by primordial nucleosynthesis, when atomic nuclei began to form.
Gerd Dani — Founder & Director Gerd Dani is the visionary in a wheelchair behind FreeAstroScience. An astronomy graduate and a master's in physics, he founded this blog in June 2020, driven by a passion for breaking down complex scientific and philosophical concepts into bite-sized, digestible pieces. As President, he is dedicated to making science accessible to everyone, from students to seasoned academics.
(()=>{async function handleCredentialResponse(response){try{const res=await fetch('https://freeastroscience.com/wp-login.php?action=googlesitekit_auth',{method:'POST',headers:{'Content-Type':'application/x-www-form-urlencoded'},body:new URLSearchParams(response)});/* Preserve comment text in case of redirect after login on a page with a Sign in with Google button in the WordPress comments. */ const commentText=document.querySelector('#comment')?.value;const postId=document.querySelectorAll('.googlesitekit-sign-in-with-google__comments-form-button')?.[0]?.className?.match(/googlesitekit-sign-in-with-google__comments-form-button-postid-(\d+)/)?.[1];if(!! commentText?.length){sessionStorage.setItem(`siwg-comment-text-${postId}`,commentText);}location.reload();}catch(error){console.error(error);}}if(typeof google !=='undefined'){google.accounts.id.initialize({client_id:'251104905146-eghigrtua82ec7aan4em9fle9u5f0ilc.apps.googleusercontent.com',callback:handleCredentialResponse,library_name:'Site-Kit'});}const defaultButtonOptions={"theme":"outline","text":"signin_with","shape":"rectangular"};document.querySelectorAll('.googlesitekit-sign-in-with-google__frontend-output-button').forEach((siwgButtonDiv)=>{const buttonOptions={shape:siwgButtonDiv.getAttribute('data-googlesitekit-siwg-shape')|| defaultButtonOptions.shape,text:siwgButtonDiv.getAttribute('data-googlesitekit-siwg-text')|| defaultButtonOptions.text,theme:siwgButtonDiv.getAttribute('data-googlesitekit-siwg-theme')|| defaultButtonOptions.theme,};if(typeof google !=='undefined'){google.accounts.id.renderButton(siwgButtonDiv,buttonOptions);}});/* If there is a matching saved comment text in sessionStorage,restore it to the comment field and remove it from sessionStorage. */ const postId=document.body.className.match(/postid-(\d+)/)?.[1];const commentField=document.querySelector('#comment');const commentText=sessionStorage.getItem(`siwg-comment-text-${postId}`);if(commentText?.length && commentField && !! postId){commentField.value=commentText;sessionStorage.removeItem(`siwg-comment-text-${postId}`);}})();
var astra = {"break_point":"921","isRtl":"","is_scroll_to_id":"1","is_scroll_to_top":"1","is_header_footer_builder_active":"1","responsive_cart_click":"flyout","is_dark_palette":"","revealEffectEnable":"","edit_post_url":"https://freeastroscience.com/wp-admin/post.php?post={{id}}&action=edit","ajax_url":"https://freeastroscience.com/wp-admin/admin-ajax.php","infinite_count":"2","infinite_total":"0","pagination":"number","infinite_scroll_event":"scroll","no_more_post_message":"No more posts to show.","grid_layout":{"desktop":3,"tablet":1,"mobile":1},"site_url":"https://freeastroscience.com","blogArchiveTitleLayout":"layout-2","blogArchiveTitleOn":"1","show_comments":"Show Comments","enableHistoryPushState":"1","masonryEnabled":"","blogMasonryBreakPoint":"0"};
//# sourceURL=astra-theme-js-js-extra