Share to: share facebook share twitter share wa share telegram print page

Fermionic condensate

A fermionic condensate (or Fermi–Dirac condensate) is a superfluid phase formed by fermionic particles at low temperatures. It is closely related to the Bose–Einstein condensate, a superfluid phase formed by bosonic atoms under similar conditions. The earliest recognized fermionic condensate described the state of electrons in a superconductor; the physics of other examples including recent work with fermionic atoms is analogous. The first atomic fermionic condensate was created by a team led by Deborah S. Jin using potassium-40 atoms at the University of Colorado Boulder in 2003.[1][2]

Background

Superfluidity

Fermionic condensates are attained at lower temperatures than Bose–Einstein condensates. Fermionic condensates are a type of superfluid. As the name suggests, a superfluid possesses fluid properties similar to those possessed by ordinary liquids and gases, such as the lack of a definite shape and the ability to flow in response to applied forces. However, superfluids possess some properties that do not appear in ordinary matter. For instance, they can flow at high velocities without dissipating any energy—i.e. zero viscosity. At lower velocities, energy is dissipated by the formation of quantized vortices, which act as "holes" in the medium where superfluidity breaks down. Superfluidity was originally discovered in liquid helium-4 whose atoms are bosons, not fermions.

Fermionic superfluids

It is far more difficult to produce a fermionic superfluid than a bosonic one, because the Pauli exclusion principle prohibits fermions from occupying the same quantum state. However, there is a well-known mechanism by which a superfluid may be formed from fermions: That mechanism is the BCS transition, discovered in 1957 by J. Bardeen, L.N. Cooper, and R. Schrieffer for describing superconductivity. These authors showed that, below a certain temperature, electrons (which are fermions) can pair up to form bound pairs now known as Cooper pairs. As long as collisions with the ionic lattice of the solid do not supply enough energy to break the Cooper pairs, the electron fluid will be able to flow without dissipation. As a result, it becomes a superfluid, and the material through which it flows a superconductor.

The BCS theory was phenomenally successful in describing superconductors. Soon after the publication of the BCS paper, several theorists proposed that a similar phenomenon could occur in fluids made up of fermions other than electrons, such as helium-3 atoms. These speculations were confirmed in 1971, when experiments performed by D.D. Osheroff showed that helium-3 becomes a superfluid below 0.0025 K. It was soon verified that the superfluidity of helium-3 arises from a BCS-like mechanism.[a]

Condensates of fermionic atoms

When Eric Cornell and Carl Wieman produced a Bose–Einstein condensate from rubidium atoms in 1995, there naturally arose the prospect of creating a similar sort of condensate made from fermionic atoms, which would form a superfluid by the BCS mechanism. However, early calculations indicated that the temperature required for producing Cooper pairing in atoms would be too cold to achieve. In 2001, Murray Holland at JILA suggested a way of bypassing this difficulty. He speculated that fermionic atoms could be coaxed into pairing up by subjecting them to a strong magnetic field.

In 2003, working on Holland's suggestion, Deborah Jin at JILA, Rudolf Grimm at the University of Innsbruck, and Wolfgang Ketterle at MIT managed to coax fermionic atoms into forming molecular bosons, which then underwent Bose–Einstein condensation. However, this was not a true fermionic condensate. On December 16, 2003, Jin managed to produce a condensate out of fermionic atoms for the first time. The experiment involved 500,000 potassium-40 atoms cooled to a temperature of 5×10−8 K, subjected to a time-varying magnetic field.[2]

Examples

Chiral condensate

A chiral condensate is an example of a fermionic condensate that appears in theories of massless fermions with chiral symmetry breaking, such as the theory of quarks in Quantum Chromodynamics.

BCS theory

The BCS theory of superconductivity has a fermion condensate. A pair of electrons in a metal with opposite spins can form a scalar bound state called a Cooper pair. The bound states themselves then form a condensate. Since the Cooper pair has electric charge, this fermion condensate breaks the electromagnetic gauge symmetry of a superconductor, giving rise to the unusual electromagnetic properties of such states.

QCD

In quantum chromodynamics (QCD) the chiral condensate is also called the quark condensate. This property of the QCD vacuum is partly responsible for giving masses to hadrons (along with other condensates like the gluon condensate).

In an approximate version of QCD, which has vanishing quark masses for N quark flavours, there is an exact chiral SU(N) × SU(N) symmetry of the theory. The QCD vacuum breaks this symmetry to SU(N) by forming a quark condensate. The existence of such a fermion condensate was first shown explicitly in the lattice formulation of QCD. The quark condensate is therefore an order parameter of transitions between several phases of quark matter in this limit.

This is very similar to the BCS theory of superconductivity. The Cooper pairs are analogous to the pseudoscalar mesons. However, the vacuum carries no charge. Hence all the gauge symmetries are unbroken. Corrections for the masses of the quarks can be incorporated using chiral perturbation theory.

Helium-3 superfluid

A helium-3 atom is a fermion and at very low temperatures, they form two-atom Cooper pairs which are bosonic and condense into a superfluid. These Cooper pairs are substantially larger than the interatomic separation.

See also

Footnotes

  1. ^ The theory of superfluid helium-3 is a little more complicated than the BCS theory of superconductivity. These complications arise because helium atoms repel each other much more strongly than electrons, but the basic idea is the same.

References

  1. ^ DeMarco, Brian; Bohn, John; Cornell, Eric (2006). "Deborah S. Jin 1968–2016". Nature. 538 (7625): 318. doi:10.1038/538318a. ISSN 0028-0836. PMID 27762370.
  2. ^ a b Regal, C.A.; Greiner, M.; Jin, D.S. (28 January 2004). "Observation of resonance condensation of Fermionic atom pairs". Physical Review Letters. 92 (4): 040403. arXiv:cond-mat/0401554. Bibcode:2004PhRvL..92d0403R. doi:10.1103/PhysRevLett.92.040403. PMID 14995356. S2CID 10799388.

Sources

Read other articles:

Gloria SteinemGloria Steinem di Penghargaan Gloria tahunan ke-23 yang diadakan oleh Ms. Foundation for Women, yang mengambil nama darinya, pada 19 Mei 2011.LahirGloria Marie Steinem[1]25 Maret 1934 (umur 89)Toledo, Ohio, United StatesTempat tinggalNew York City, New York, U.S.[2]KebangsaanAmerican[3]AlmamaterSmith CollegePekerjaanPenulis dan jurnalis untuk majalah Ms. dan New York[4]Kota asalToledo, OhioGerakan politikFeminisme[4]Anggota dewanWom…

Gempa Bumi Bengkulu 2020Waktu UTC2020-08-18 21:23:57ISCUSGS-ANSSTanggal setempat19 Agustus 2020 (2020-08-19)Waktu setempat05:23:56 WIB 05:29:35 WIBKekuatan6,8 Mw 6,9 MwKedalaman11 km (6,8 mi) 10 km (6,2 mi)Episentrum4°30′S 100°55′E / 4.50°S 100.91°E / -4.50; 100.91Koordinat: 4°30′S 100°55′E / 4.50°S 100.91°E / -4.50; 100.91 3°44′S 101°31′E / 3.74°S 101.51°E / -3…

  هذه المقالة عن المستنصر بالله الفاطمي. لمعانٍ أخرى، طالع المستنصر بالله (توضيح).  هذه المقالة عن المستنصر بالله الفاطمي. لمعانٍ أخرى، طالع فاطمي (توضيح). الخليفة المستنصر بالله الفاطمي معلومات شخصية الميلاد 17 جمادى الآخرة 420 هـ/ 5 يوليو 1029(1029-07-05)القاهرة الوفاة جماد…

Halaman ini berisi artikel tentang doa memohon perantaraan malaikat pelindung. Untuk doa penghormatan atas penjelmaan Tuhan menjadi manusia, lihat Angelus Domini. Malaikat pelindung, karya Pietro da Cortona (1656) Angele Dei (istilah bahasa Latin, berarti Malaikat Allah), adalah doa tradisional dalam Gereja Katolik Roma untuk memohon perantaraan malaikat pelindung. Pencipta doa ini tidak diketahui persis, tetapi dikaitkan dengan Santo Anselmus dan Reginald dari Canterbury.[1] Menurut Buk…

KhoobsuratPoster rilis layar lebarNama lainHindiखूबसूरत SutradaraShashanka Ghosh[1]ProduserRhea KapoorAnil KapoorSiddharth Roy Kapoor[1]Ditulis olehIndira BishtPemeranFawad KhanSonam Kapoor[2]Penata musikSneha KhanwalkarBadshahAmaal MallikPerusahaanproduksiWalt Disney PicturesUTV Motion PicturesAnil Kapoor Films Company[3]DistributorUTV Motion Pictures (India)Walt Disney StudiosMotion PicturesTanggal rilis 19 September 2014 (2014-09-…

Arranged ability to borrow money For the 2014 Georgian film, see Line of Credit (film). This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: Line of credit – news · newspapers · books · scholar · JSTOR (September 2014) (Learn how and when to remove this template message) Part of a series onFinance Markets Assets Bon…

Private, coeducational school in Chippewa Falls, , Wisconsin, United StatesMcDonell Central Catholic High SchoolAddress1316 Bel Air BoulevardChippewa Falls, (Chippewa County), Wisconsin 54729United StatesCoordinates44°56′8″N 91°24′50″W / 44.93556°N 91.41389°W / 44.93556; -91.41389InformationTypePrivate, CoeducationalReligious affiliation(s)Roman CatholicEstablished1883FounderAlexander B. McDonellPresidentMolly BushmanPrincipalBrian SchulnerGrades9–12Average …

Kedutaan Besar Republik Indonesia di Den HaagAmbassade van de Republiek Indonesië in Den HaagKoordinat52°05′10″N 4°17′19″E / 52.08614°N 4.288721°E / 52.08614; 4.288721Lokasi Den Haag, BelandaAlamatTobias Asserlaan 8, 2517 KCDen Haag, BelandaDuta BesarMayerfasYurisdiksi BelandaSitus webkemlu.go.id/thehague/id Kedutaan Besar Republik Indonesia di Den Haag (KBRI Den Haag) (Belanda: Ambassade van de Republiek Indonesië in Den Haagcode: nl is deprecated ) ad…

Non-profit private pontifical university in Pamplona, Spain Not to be confused with Universidad Pública de Navarra. University of NavarraSpanish: Universidad de NavarraBasque: Nafarroako UnibertsitateaLatin: Universitas Studiorum NavarrensisTypePrivate, Roman CatholicEstablished17 October 1952ChancellorFernando Ocáriz BrañaPresidentMaría Iraburu ElizaldeAcademic staff1,175 (6,308 employees)Students12,779 (2021–2022)[1]Undergraduates8,924Postgraduates1,076LocationPamplona, SpainCamp…

Lamiaceae Daun madu limau TumbuhanJenis buahkapsul dan Buah beri TaksonomiDivisiTracheophytaSubdivisiSpermatophytesKladAngiospermaeKladmesangiospermsKladeudicotsKladcore eudicotsKladasteridsKladlamiidsOrdoLamialesFamiliLamiaceae Martinov, 1820 Tipe taksonomiLamium Tata namaStatus nomenklaturnomen conservandum lihat teks.lbs Suku lavender-lavenderan atau Lamiaceae adalah salah satu famili anggota tumbuhan berbunga. Menurut Sistem klasifikasi APG II suku ini termasuk dalam ordo Lamiales. Lami…

Association football club in England Football clubFawleyFull nameFawley Association Football ClubNickname(s)The OilersFounded1923GroundWaterside Sports & Social Club, HolburyChairmanKevin MitchellManagerLee Shepherd and Simon EagleLeagueWessex League Division One2022–23Wessex League Division One, 13th of 20 Home colours Away colours Fawley Association Football Club is a football club based in Fawley, near Southampton, in Hampshire, England. They are currently members of Wessex League Divis…

Species of passerine bird Palestine sunbird Male Female, both C. o. oseaDana Biosphere Reserve, Jordan Conservation status Least Concern  (IUCN 3.1)[1] Scientific classification Domain: Eukaryota Kingdom: Animalia Phylum: Chordata Class: Aves Order: Passeriformes Family: Nectariniidae Genus: Cinnyris Species: C. osea Binomial name Cinnyris oseaBonaparte, 1856 Synonyms Cinnyris oseusNectarinia osea The Palestine sunbird (Cinnyris osea) is a small passerine bird of the sunbird fa…

NOL4 المعرفات الأسماء المستعارة NOL4, CT125, NOLP, HRIHFB2255, nucleolar protein 4 معرفات خارجية الوراثة المندلية البشرية عبر الإنترنت 603577 MGI: MGI:2441684 HomoloGene: 36142 GeneCards: 8715 نمط التعبير عن الحمض النووي الريبوزي المزيد من بيانات التعبير المرجعية أورثولوج الأنواع الإنسان الفأر أنتريه 8715 319211 Ensembl ENSG00000101746 …

Pour les articles homonymes, voir Montalba. Montalba-le-Château Vue générale du village. Blason Administration Pays France Région Occitanie Département Pyrénées-Orientales Arrondissement Prades Intercommunalité Communauté de communes de Roussillon Conflent Maire Mandat Marie Martinez 2020-2026 Code postal 66130 Code commune 66111 Démographie Populationmunicipale 155 hab. (2021 ) Densité 9,7 hab./km2 Géographie Coordonnées 42° 41′ 48″ nord, 2° 33…

2nd South Carolina Volunteer Infantry Regiment (Colored)South Carolina state flagActiveMay 22, 1863, to February 8, 1864CountryUnited StatesAllegianceUnited States of AmericaUnionBranchInfantryEquipmentRifled musketsEngagementsRaid at Combahee FerryBurning of Darien, GeorgiaMilitary unit The 2nd South Carolina Volunteer Infantry Regiment (Colored) was an African-American infantry regiment that served in the Union Army during the American Civil War. It was among the scores of units raised startin…

American basketball player (born 1984) Raymond FeltonFelton with the New York Knicks in October 2010Personal informationBorn (1984-06-26) June 26, 1984 (age 39)Marion, South Carolina, U.S.Listed height6 ft 1 in (1.85 m)Listed weight210 lb (95 kg)Career informationHigh schoolLatta (Latta, South Carolina)CollegeNorth Carolina (2002–2005)NBA draft2005: 1st round, 5th overall pickSelected by the Charlotte BobcatsPlaying career2005–2019PositionPoint guard / shooting …

  提示:此条目页的主题不是中華人民共和國最高領導人。 中华人民共和国 中华人民共和国政府与政治系列条目 执政党 中国共产党 党章、党旗党徽 主要负责人、领导核心 领导集体、民主集中制 意识形态、组织 以习近平同志为核心的党中央 两个维护、两个确立 全国代表大会 (二十大) 中央委员会 (二十届) 总书记:习近平 中央政治局 常务委员会 中央书记处 中…

此条目序言章节没有充分总结全文内容要点。 (2019年3月21日)请考虑扩充序言,清晰概述条目所有重點。请在条目的讨论页讨论此问题。 哈萨克斯坦總統哈薩克總統旗現任Қасым-Жомарт Кемелұлы Тоқаев卡瑟姆若马尔特·托卡耶夫自2019年3月20日在任任期7年首任努尔苏丹·纳扎尔巴耶夫设立1990年4月24日(哈薩克蘇維埃社會主義共和國總統) 哈萨克斯坦 哈萨克斯坦政府與…

Військово-музичне управління Збройних сил України Тип військове формуванняЗасновано 1992Країна  Україна Емблема управління Військово-музичне управління Збройних сил України — структурний підрозділ Генерального штабу Збройних сил України призначений для плануван…

本條目存在以下問題,請協助改善本條目或在討論頁針對議題發表看法。 此條目需要編修,以確保文法、用詞、语气、格式、標點等使用恰当。 (2013年8月6日)請按照校對指引,幫助编辑這個條目。(幫助、討論) 此條目剧情、虛構用語或人物介紹过长过细,需清理无关故事主轴的细节、用語和角色介紹。 (2020年10月6日)劇情、用語和人物介紹都只是用於了解故事主軸,輔助讀…

Index: pl ar de en es fr it arz nl ja pt ceb sv uk vi war zh ru af ast az bg zh-min-nan bn be ca cs cy da et el eo eu fa gl ko hi hr id he ka la lv lt hu mk ms min no nn ce uz kk ro simple sk sl sr sh fi ta tt th tg azb tr ur zh-yue hy my ace als am an hyw ban bjn map-bms ba be-tarask bcl bpy bar bs br cv nv eml hif fo fy ga gd gu hak ha hsb io ig ilo ia ie os is jv kn ht ku ckb ky mrj lb lij li lmo mai mg ml zh-classical mr xmf mzn cdo mn nap new ne frr oc mhr or as pa pnb ps pms nds crh qu sa sah sco sq scn si sd szl su sw tl shn te bug vec vo wa wuu yi yo diq bat-smg zu lad kbd ang smn ab roa-rup frp arc gn av ay bh bi bo bxr cbk-zam co za dag ary se pdc dv dsb myv ext fur gv gag inh ki glk gan guw xal haw rw kbp pam csb kw km kv koi kg gom ks gcr lo lbe ltg lez nia ln jbo lg mt mi tw mwl mdf mnw nqo fj nah na nds-nl nrm nov om pi pag pap pfl pcd krc kaa ksh rm rue sm sat sc trv stq nso sn cu so srn kab roa-tara tet tpi to chr tum tk tyv udm ug vep fiu-vro vls wo xh zea ty ak bm ch ny ee ff got iu ik kl mad cr pih ami pwn pnt dz rmy rn sg st tn ss ti din chy ts kcg ve 
Prefix: a b c d e f g h i j k l m n o p q r s t u v w x y z 0 1 2 3 4 5 6 7 8 9 
Kembali kehalaman sebelumnya