Причинные множества

Причинные множества — направление исследований в квантовой гравитации, основанное на математической гипотезе о дискретной структуре пространства-времени и о частичной упорядоченности его точек, физически означающей причинно-следственные связи[англ.] между событиями в них с сохранением лоренцевской инвариантности.

В теории причинных множеств важную роль играет теорема[1] Дэвида Маламента (David Malament[англ.]), которая гласит, что если существует биективное отображение между двумя различающими прошлое и будущее[англ.] областями пространства-времени, которое сохраняет их причинную структуру, то это отображение является конформно изоморфным. Конформный множитель, который остается неопределенным, связан с объемом областей в пространстве-времени. Его можно найти, указав элемент объема для каждой точки пространства-времени. Общий объем области пространства-времени затем может быть найден путем подсчета количества точек в этой области.

Определение

Причинным множеством называется множество с отношением частичной упорядоченности , обладающее свойствами:

  • Рефлексивность: Для всех , выполняется .
  • Антисимметричность: Для всех из справедливости и следует .
  • Транзитивность: Для всех , из справедливости и следует .
  • Локальная конечность[англ.]: Для всех , выполняется .

Если и , то используют обозначение .

Множество представляет набор событий пространства-времени, а отношение порядка представляет причинно-следственную связь между событиями (аналогичную идею в лоренцевом многообразии см. причинно-следственные связи[англ.]).

Хотя в этом определении используется рефлексивное соглашение, мы могли бы выбрать нерефлексивное соглашение, в котором отношение порядка нерефлексивно.

Причинная структура[англ.] лоренцева многообразия (без замкнутой причинно-следственной кривой[англ.]) удовлетворяет первым трем условиям. Это условие локальной конечности, которое вводит дискретность пространства-времени.

См. также

Примечания

  1. Malament, David B. (July 1977). "The class of continuous timelike curves determines the topology of spacetime" (PDF). Journal of Mathematical Physics. 18 (7): 1399—1404. Bibcode:1977JMP....18.1399M. doi:10.1063/1.523436. Архивировано (PDF) 14 декабря 2021. Дата обращения: 19 сентября 2021.

Дальнейшее чтение

Введения и обзоры
Основы теории
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  • A. Einstein, Letter to H.S. Joachim, August 14, 1954; Item 13-453 cited in J. Stachel, «Einstein and the Quantum: Fifty Years of Struggle», in From Quarks to Quasars, Philosophical Problems of Modern Physics, edited by R.G. Colodny (U. Pittsburgh Press, 1986), pages 380—381; (Historical)
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  • J. Myrheim, Statistical geometry, CERN preprint TH-2538 (1978); (Foundations, Historical)
  • B. Riemann, Über die Hypothesen, welche der Geometrie zu Grunde liegen, The Collected Works of B. Riemann (Dover NY 1953); ; (Historical)
  • R.D. Sorkin; A Finitary Substitute for Continuous Topology, Int. J. Theor. Phys. 30 7: 923—947 (1991); (Foundational)
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Диссертации
Обсуждения
Теория многообразий
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  • D.A. Meyer, The Dimension of Causal Sets I: Minkowski dimension, Syracuse University preprint (1988); (Dimension theory)
  • D.A. Meyer, The Dimension of Causal Sets II: Hausdorff dimension, Syracuse University preprint (1988); (Dimension theory)
  • D.A. Meyer, Spherical containment and the Minkowski dimension of partial orders, Order 10: 227—237 (1993); (Dimension theory)
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  • D.D. Reid, Manifold dimension of a causal set: Tests in conformally flat spacetimes, Phys. Rev. D67 (2003) 024034; arXiv:gr-qc/0207103v2 (Dimension theory)
  • S. Surya, Causal Set Topology; arXiv:0712.1648
Геометрия
Вычисление космологической постоянной
  • M. Ahmed, S. Dodelson, P.B. Greene, R.D. Sorkin, Everpresent lambda; Phys. Rev. D69, 103523, (2004) arXiv:astro-ph/0209274v1; (Cosmological Constant)
  • Y. Jack Ng and H. van Dam, A small but nonzero cosmological constant; Int. J. Mod. Phys D. 10 : 49 (2001) arXiv:hep-th/9911102v3; (PreObservation Cosmological Constant)
  • Y. Kuznetsov, On cosmological constant in Causal Set theory; arXiv:0706.0041
  • R.D. Sorkin, A Modified Sum-Over-Histories for Gravity; reported in Highlights in gravitation and cosmology: Proceedings of the International Conference on Gravitation and Cosmology, Goa, India, 14-19 December 1987, edited by B. R. Iyer, Ajit Kembhavi, Jayant V. Narlikar, and C. V. Vishveshwara, see pages 184—186 in the article by D. Brill and L. Smolin: «Workshop on quantum gravity and new directions», pp 183—191 (Cambridge University Press, Cambridge, 1988); (PreObservation Cosmological Constant)
  • R.D. Sorkin; On the Role of Time in the Sum-over-histories Framework for Gravity, paper presented to the conference on The History of Modern Gauge Theories, held Logan, Utah, July 1987; Int. J. Theor. Phys. 33 : 523—534 (1994); (PreObservation Cosmological Constant)
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  • R.D. Sorkin, Discrete Gravity; a series of lectures to the First Workshop on Mathematical Physics and Gravitation, held Oaxtepec, Mexico, Dec. 1995 (unpublished); (PreObservation Cosmological Constant)
  • R.D. Sorkin, Big extra dimensions make Lambda too small; arXiv:gr-qc/0503057v1; (Cosmological Constant)
  • R.D. Sorkin, Is the cosmological «constant» a nonlocal quantum residue of discreteness of the causal set type?; Proceedings of the PASCOS-07 Conference, July 2007, Imperial College London; arXiv:0710.1675; (Cosmological Constant)
  • J. Zuntz, The CMB in a Causal Set Universe, arXiv:0711.2904 (CMB)
Лоренцевская инвариантность
  • L. Bombelli, J. Henson, R.D. Sorkin; Discreteness without symmetry breaking: a theorem; arXiv:gr-qc/0605006v1; (Lorentz invariance, Sprinkling)
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  • F. Dowker, J. Henson, R.D. Sorkin, Discreteness and the transmission of light from distant sources; arXiv:1009.3058 (Coherence of light, Phenomenology)
  • J. Henson, Macroscopic observables and Lorentz violation in discrete quantum gravity; arXiv:gr-qc/0604040v1; (Lorentz invariance, Phenomenology)
  • N. Kaloper, D. Mattingly, Low energy bounds on Poincaré violation in causal set theory; Phys. Rev. D 74, 106001 (2006) arXiv:astro-ph/0607485 (Poincaré invariance, Phenomenology)
  • D. Mattingly, Causal sets and conservation laws in tests of Lorentz symmetry; Phys. Rev. D 77, 125021 (2008) arXiv:0709.0539 (Lorentz invariance, Phenomenology)
  • L. Philpott, F. Dowker, R.D. Sorkin, Energy-momentum diffusion from spacetime discreteness; arXiv:0810.5591 (Phenomenology, Swerves)
Энтропия черных дыр
  • D. Dou, Black Hole Entropy as Causal Links; Fnd. of Phys, 33 2:279-296(18) (2003); arXiv:gr-qc/0302009v1 (Black hole entropy)
  • D.P. Rideout, S. Zohren, Counting entropy in causal set quantum gravity ; arXiv:gr-qc/0612074v1; (Black hole entropy)
  • D.P. Rideout, S. Zohren, Evidence for an entropy bound from fundamentally discrete gravity; Class. Quantum Grav. 23 (2006) 6195-6213; arXiv:gr-qc/0606065v2 (Black hole entropy)
Локальность и квантовая теория поля
Динамика
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  • G. Brightwell; M. Luczak; Order-invariant Measures on Fixed Causal Sets; arXiv:0901.0242; (Measures on causal sets)
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  • D.A. Meyer; Spacetime Ising models; (UCSD preprint May 1993); (Quantum Dynamics)
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American public servant For the botanist, see Charles Elmer Allen. Charles E. AllenCharles E. AllenUnder Secretary of Homeland Security for Intelligence and AnalysisIn officeAugust 23, 2005 – January 20, 2009PresidentGeorge W. BushPreceded byPatrick M. HughesSucceeded byCaryn Wagner Personal detailsBornTaylorsville, Alexander County, North Carolina, USAlma materUniversity of North CarolinaU.S. Air Force Air War CollegeWebsiteDHS Charles E. Allen Charles E. Allen (born 1936) is an A...

 

British politician The Earl of Shannon wearing the mantle and collar of a Knight of the Order of Saint Patrick Henry Boyle, 3rd Earl of Shannon, KP, PC (Ire) (8 August 1771 – 22 April 1842), styled Viscount Boyle from 1764 until 1807, was an Anglo-Irish politician and peer who was one of the last surviving members of the Parliament of Ireland. He represented County Cork in the Parliament of the United Kingdom from 1801 to 1807. He then briefly served as Member of Parliament for Bandon in 18...

 

Hindu festival of lights Deepawali and Dipawali redirect here. For other uses, see Deepavali (disambiguation). DiwaliRangoli decorations, made using coloured fine powder or sand, are popular during Diwali.Also calledDeepavaliObserved byHindus, Jains, Sikhs,[1] some Buddhists (notably Newar Buddhists[2])TypeReligious, cultural, seasonalSignificanceSee belowCelebrationsDiya lightingpuja (worship and prayer)havan (fire offering)vrat (fasting)dāna (charity)melā (fairs/shows...

Road transport occupation in Wales Welsh Government traffic officerSwyddog Traffig y Llywodraeth Cymru (Welsh)OccupationActivity sectorsGovernment, road traffic control, vehicle recovery, roadside assistanceDescriptionFields ofemploymentMotorways and select trunk roads in Wales operated by Trunk road agents.Related jobsRoad policing unit, Traffic guard Logo used by Welsh Government Traffic Officers Welsh Government traffic officers (Welsh: Swyddog Traffig y Llywodraeth Cymru) are civilia...

 

Waldemar JanuszczakLahir12 Januari 1954 (umur 70)Basingstoke, Hampshire, England, Inggris RayaPekerjaanKritikus seni dan presenter televisi Waldemar Januszczak (lahir 12 Januari 1954) adalah kritikus seni Inggris, produser film dokumenter dan presenter televisi. Sebelumnya dia adalah kritikus seni The Guardian, dia mengambil peran yang sama di The Sunday Times pada tahun 1992, dan telah dua kali memenangkan Penghargaan Kritikus Tahun Ini.[1] Referensi ^ Waldemar Januszczak Prana...

 

Fencingat the Games of the XXVIII OlympiadVenueHelliniko Olympic ComplexDates14–22 August 2004← 20002008 → Fencing at the 2004 Summer Olympics took place at the Fencing Hall at the Hellinikon Olympic Complex. Ten gold medals were awarded in individual and team events, further divided into three styles of fencing: épée, foil and sabre.[1] Fencing is one of the few sports that have been featured in every modern Olympic Games, and for the first time female comp...

رياضياتصنف فرعي من علوم شكلية، علوم دقيقةجزء من العلوم والتكنولوجيا والهندسة والرياضيات[1] — علوم شكلية[2] — علوم دقيقة[3][4] يمتهنه رياضياتيفروع رياضيات بحتة، رياضيات تطبيقيةالاستعمالات  القائمة ... علم[5] — نمذجة رياضية[5] — هندسة — تمويل[6] �...

 

English cricketer Alec HearneHearne in 1903Personal informationFull nameAlec HearneBorn(1863-07-22)22 July 1863Ealing, MiddlesexDied16 May 1952(1952-05-16) (aged 88)Beckenham, KentBattingRight-handedBowlingRight-arm slowRelationsGeorge Hearne (father) George Gibbons Hearne (brother)Frank Hearne (brother)Other familyInternational information National sideEnglandOnly Test (cap 76)19 March 1892 v South Africa Domestic team information YearsTeam1884–1906Kent Career ...