급팽창 이론 (Korean Wikipedia)

Analysis of information sources in references of the Wikipedia article "급팽창 이론" in Korean language version.

refsWebsite
Global rank Korean rank
69th place
54th place
18th place
27th place
1st place
1st place
low place
low place
2nd place
3rd place
32nd place
656th place
75th place
67th place
3rd place
9th place
1,959th place
1,532nd place
896th place
752nd place
741st place
281st place
low place
low place
low place
low place
low place
low place
low place
low place
7th place
36th place
92nd place
435th place
936th place
686th place
2,467th place
1,585th place
low place
8,558th place
887th place
606th place
2,509th place
673rd place
2,779th place
3,103rd place
6th place
18th place
11th place
310th place
20th place
66th place
14th place
15th place
1,283rd place
1,671st place

archive.org

  • J.B. Hartle (2003). Gravity: An Introduction to Einstein's General Relativity (1st ed.). Addison Wesley. p. 411.

archive.today

arxiv.org

  • Tsujikawa, Shinji (28 April 2003). "Introductory review of cosmic inflation". arXiv:hep-ph/0304257.
  • Melia, Fulvio (2008). "The Cosmic Horizon". Monthly Notices of the Royal Astronomical Society. 382 (4): 1917–1921. arXiv:0711.4181.
  • Melia, Fulvio; et al. (2009). "The Cosmological Spacetime". International Journal of Modern Physics D. 18 (12): 1889–1901. arXiv:0907.5394.
  • Kofman, Lev; Linde, Andrei; Starobinsky, Alexei (1994). "Reheating after inflation". Physical Review Letters. 73 (5): 3195–3198. arXiv:hep-th/9405187.
  • Raby, Stuart (June 2006). "Grand Unified Theories". In Bruce Hoeneisen (ed.). Galapagos World Summit on Physics Beyond the Standard Model. 2nd World Summit: Physics Beyond the Standard Model. arXiv:hep-ph/0608183.
  • He, Dongshan; Gao, Dongfeng; Cai, Qing-yu (2014). "Spontaneous creation of the universe from nothing". Physical Review D. 89 (8): 083510. arXiv:1404.1207.
  • Ade, P.A.R.; et al. (2016). "Planck 2015 results. XX. Constraints on inflation". Astronomy & Astrophysics. 594: 17. arXiv:1502.02114.
  • Kazanas, D. (2009). "Cosmological Inflation: A Personal Perspective". In Contopoulos, G.; Patsis, P.A. (eds.). Chaos in Astronomy: Conference 2007. Astrophysics and Space Science Proceedings. Vol. 8. Springer Science & Business Media. pp. 485–496. arXiv:0803.2080.
  • Ade, P. A. R.; et al. (Planck Collaboration) (1 October 2016). "Planck 2015 results. XIII. Cosmological parameters". Astronomy & Astrophysics. 594: A13. arXiv:1502.01589.
  • Boyle, Latham A.; Steinhardt, Paul J.; Turok, Neil (24 March 2006). "Inflationary Predictions for Scalar and Tensor Fluctuations Reconsidered". Physical Review Letters. 96 (11): 111301. arXiv:astro-ph/0507455.
  • Tegmark, M.; et al. (August 2006). "Cosmological constraints from the SDSS luminous red galaxies". Physical Review D. 74 (12): 123507. arXiv:astro-ph/0608632.
  • Tegmark, Max (2005). "What does inflation really predict?". Journal of Cosmology and Astroparticle Physics. 2005 (4): 001. arXiv:astro-ph/0410281.
  • >Ade, P. A. R.; et al. (Planck Collaboration) (1 October 2016). "Planck 2015 results. XX. Constraints on inflation". Astronomy & Astrophysics. 594: A20. arXiv:1502.02114.
  • Spergel, D. N.; et al. (2003). "First year Wilkinson Microwave Anisotropy Probe (WMAP) observations: determination of cosmological parameters". Astrophysical Journal Supplement Series. 148 (1): 175–194. arXiv:astro-ph/0302209.
  • Ade, P.A.R.; et al. (BICEP2 Collaboration) (19 June 2014). "Detection of B-Mode Polarization at Degree Angular Scales by BICEP2". Physical Review Letters. 112 (24): 241101. arXiv:1403.3985.
  • Planck Collaboration Team (2016). "Planck intermediate results. XXX. The angular power spectrum of polarized dust emission at intermediate and high Galactic latitudes". Astronomy & Astrophysics. 586 (133): A133. arXiv:1409.5738.
  • Rosset, C.; PLANCK-HFI collaboration (2005). "Systematic effects in CMB polarization measurements". Exploring the universe: Contents and structures of the universe (XXXIXth Rencontres de Moriond). arXiv:astro-ph/0502188.
  • Salvio, Alberto (2013). "Higgs inflation at NNLO after the boson discovery". Physics Letters B. 727 (1–3): 234–239. arXiv:1308.2244.
  • Salvio, Alberto; Strumia, Alessandro (17 March 2014). "Agravity". Journal of High Energy Physics. 2014 (6): 80. arXiv:1403.4226.
  • Alabidi, Laila; Lyth, David H. (2006). "Inflation models and observation". Journal of Cosmology and Astroparticle Physics. 2006 (5): 016. arXiv:astro-ph/0510441.
  • Brandenberger, Robert H. (November 2004). "Challenges for inflationary cosmology (10th International Symposium on Particles, Strings and Cosmology)". arXiv:astro-ph/0411671.
  • Carroll, Sean M.; Chen, Jennifer (2005). "Does inflation provide natural initial conditions for the universe?". General Relativity and Gravitation. 37 (10): 1671–4. arXiv:gr-qc/0505037.
  • Aguirre, Anthony; Gratton, Steven (2003). "Inflation without a beginning: A null boundary proposal". Physical Review D. 67 (8): 083515. arXiv:gr-qc/0301042.
  • Hawking, Stephen; Hertog, Thomas (20 April 2018). "A smooth exit from eternal inflation?". Journal of High Energy Physics. 2018 (4): 147. arXiv:1707.07702.
  • Albrecht, Andreas; Sorbo, Lorenzo (2004). "Can the universe afford inflation?". Physical Review D. 70 (6): 063528. arXiv:hep-th/0405270.
  • Martin, Jerome; Brandenberger, Robert (2001). "The trans-Planckian problem of inflationary cosmology". Physical Review D. 63 (12): 123501. arXiv:hep-th/0005209.
  • Martin, Jerome; Ringeval, Christophe (2004). "Superimposed Oscillations in the WMAP Data?". Physical Review D. 69 (8): 083515. arXiv:astro-ph/0310382.
  • Brandenberger, Robert H. (2001). A Status Review of Inflationary Cosmology. arXiv:hep-ph/0101119.
  • Linde, Andrei; Fischler, W. (2005). "Prospects of Inflation". Physica Scripta. 117 (T117): 40–48. arXiv:hep-th/0402051.
  • Blanco-Pillado, J. J.; Burgess, C. P.; Cline, J. M.; Escoda, C.; Gomez-Reino, M.; Kallosh, R.; Linde, A.; Quevedo, F. (2004). "Racetrack Inflation". Journal of High Energy Physics. 2004 (11): 063. arXiv:hep-th/0406230.
  • Kachru, Shamit; et al. (2003). "Towards inflation in string theory". Journal of Cosmology and Astroparticle Physics. 2003 (10): 013. arXiv:hep-th/0308055.
  • Dvali, Gia; Henry Tye, S. -H. (1998). "Brane Inflation". Physics Letters B. 450 (1999): 72–82. arXiv:hep-ph/9812483.
  • Bars, Itzhak; Steinhardt, Paul; Turok, Neil (2014). "Sailing through the big crunch-big bang transition". Physical Review D. 89 (6): 061302. arXiv:1312.0739.
  • Poplawski, N.J. (2010). "Cosmology with torsion: An alternative to cosmic inflation". Physics Letters B. 694 (3): 181–185. arXiv:1007.0587.
  • Poplawski, N. (2012). "Nonsingular, big-bounce cosmology from spinor-torsion coupling". Physical Review D. 85 (10): 107502. arXiv:1111.4595.
  • Lehners, Jean-Luc (2 June 2009). "Ekpyrotic and cyclic cosmology". Physics Reports. 465 (6): 223–263. arXiv:0806.1245.
  • Battefeld, Thorsten; Watson, Scott (2006). "String Gas Cosmology". Reviews of Modern Physics. 78 (2): 435–454. arXiv:hep-th/0510022.
  • Lashkari, Nima; Brandenberger, Robert H (17 September 2008). "Speed of sound in string gas cosmology". Journal of High Energy Physics. 2008 (9): 082. arXiv:0806.4358.
  • Ijjas, Anna; Steinhardt, Paul J.; Loeb, Abraham (2013). "Inflationary paradigm in trouble after Planck 2013". Physics Letters B. 723 (4–5): 261–266. arXiv:1304.2785.
  • Ijjas, Anna; Steinhardt, Paul J.; Loeb, Abraham (2014). "Inflationary schism after Planck 2013". Physics Letters B. 736: 142–146. arXiv:1402.6980.
  • Guth, Alan H.; Kaiser, David I.; Nomura, Yasunori (2014). "Inflationary paradigm after Planck 2013". Physics Letters B. 733: 112–119. arXiv:1312.7619.
  • Linde, Andrei (2014). "Inflationary cosmology after Planck 2013". arXiv:1402.0526.

bbc.com

bicepkeck.org

books.google.com

breakthroughprize.org

caltech.edu

authors.library.caltech.edu

cern.ch

cds.cern.ch

doi.org

ghostarchive.org

harvard.edu

ui.adsabs.harvard.edu

  • Steinhardt, Paul J. (2011). "The inflation debate: Is the theory at the heart of modern cosmology deeply flawed?". Scientific American. Vol. 304, no. 4. pp. 18–25. Bibcode:2011SciAm.304d..36S.
  • Misner, Charles W.; Leach, P G L (1969). "Mixmaster universe". Physical Review Letters. 22 (15): 1071–74. Bibcode:2008JPhA...41o5201A.
  • Polyakov, Alexander M. (1974). "Particle spectrum in quantum field theory". JETP Letters. 20: 194–195. Bibcode:1974JETPL..20..194P.
  • Einhorn, Martin B.; Stein, D.L.; Toussaint, Doug (1980). "Are grand unified theories compatible with standard cosmology?". Physical Review D. 21 (12): 3295–3298. Bibcode:1980PhRvD..21.3295E.
  • Zel'dovich, Ya.; Khlopov, M. Yu. (1978). "On the concentration of relic monopoles in the universe". Physics Letters B. 79 (3): 239–41. Bibcode:1978PhLB...79..239Z.
  • Starobinsky, A.A. (December 1979). "Spectrum of relict gravitational radiation and the early state of the universe". Journal of Experimental and Theoretical Physics Letters. 30: 682. Bibcode:1979JETPL..30..682S. Starobinskii, A.A. (December 1979). "Spectrum of relict gravitational radiation and the early state of the universe". Pisma Zh. Eksp. Teor. Fiz. 30: 719. Bibcode:1979ZhPmR..30..719S.
  • Starobinsky, Alexei A. (1980). "A new type of isotropic cosmological models without singularity". Physics Letters B. 91 (1): 99–102. Bibcode:1980PhLB...91...99S.
  • Kazanas, D. (1980). "Dynamics of the universe and spontaneous symmetry breaking". Astrophysical Journal. 241: L59–63. Bibcode:1980ApJ...241L..59K.
  • Sato, K. (1981). "Cosmological baryon number domain structure and the first order phase transition of a vacuum". Physics Letters B. 33 (1): 66–70. Bibcode:1981PhLB...99...66S.
  • Einhorn, Martin B.; Sato, Katsuhiko (1981). "Monopole production in the very early universe, in a first-order phase transition". Nuclear Physics B. 180 (3): 385–404. Bibcode:1981NuPhB.180..385E.
  • Linde, A (1982). "A new inflationary universe scenario: A possible solution of the horizon, flatness, homogeneity, isotropy and primordial monopole problems". Physics Letters B. 108 (6): 389–393. Bibcode:1982PhLB..108..389L.
  • Chibisov, Viatcheslav F.; Chibisov, G. V. (1981). "Quantum fluctuation and "nonsingular" universe". JETP Letters. 33: 532–5. Bibcode:1981JETPL..33..532M.
  • Mukhanov, Viatcheslav F. (1982). "The vacuum energy and large scale structure of the universe". Soviet Physics JETP. 56 (2): 258–65. Bibcode:1982JETP...56..258M.
  • Hawking, S.W. (1982). "The development of irregularities in a single bubble inflationary universe". Physics Letters B. 115 (4): 295–297. Bibcode:1982PhLB..115..295H.
  • Starobinsky, Alexei A. (1982). "Dynamics of phase transition in the new inflationary universe scenario and generation of perturbations". Physics Letters B. 117 (3–4): 175–8. Bibcode:1982PhLB..117..175S.
  • Guth, A. H.; Pi, S. -Y (1982). "Fluctuations in the new inflationary universe". Physical Review Letters. 49 (15): 1110–3. Bibcode:1982PhRvL..49.1110G.
  • Bardeen, James M.; Steinhardt, Paul J.; Turner, Michael S. (1983). "Spontaneous creation Of almost scale-free density perturbations in an inflationary universe". Physical Review D. 28 (4): 679–693. Bibcode:1983PhRvD..28..679B.
  • Linde, Andrei D. (1983). "Chaotic inflation". Physics Letters B. 129 (3): 171–81. Bibcode:1983PhLB..129..177L.
  • Vilenkin, Alexander (1983). "Birth of Inflationary Universes". Physical Review D. 27 (12): 2848–2855. Bibcode:1983PhRvD..27.2848V.
  • Hartle, J.; Hawking, S. (1983). "Wave function of the universe". Physical Review D. 28 (12): 2960–2975. Bibcode:1983PhRvD..28.2960H.
  • Page, Don N. (1983). "Inflation does not explain time asymmetry". Nature. 304 (5921): 39–41. Bibcode:1983Natur.304...39P.
  • Hawking, S. W.; Page, Don N. (1988). "How probable is inflation?". Nuclear Physics B. 298 (4): 789–809. Bibcode:1988NuPhB.298..789H.
  • Brandenberger, R.; Vafa, C. (1989). "Superstrings in the early universe". Nuclear Physics B. 316 (2): 391–410. Bibcode:1989NuPhB.316..391B.
  • Penrose, Roger (2004). The Road to Reality: A Complete Guide to the Laws of the Universe. London, UK: Vintage Books. p. 755. Penrose, Roger (1989). "Difficulties with Inflationary Cosmology". Annals of the New York Academy of Sciences. 271: 249–264. Bibcode:1989NYASA.571..249P.

cfa.harvard.edu

ictp.it

lbl.gov

pdg.lbl.gov

nasa.gov

jpl.nasa.gov

lambda.gsfc.nasa.gov

map.gsfc.nasa.gov

npr.org

nytimes.com

phys.org

princeton.edu

physics.princeton.edu

rug.nl

astro.rug.nl

scientificamerican.com

semanticscholar.org

space.com

storify.com

ust.hk

repository.ust.hk

uu.nl

dspace.library.uu.nl

web.archive.org

wikipedia.org

en.m.wikipedia.org

en.wikipedia.org

  • 섭동은 파장푸리에 모드로 나타낼 수 있다. 각 푸리에 모드는 평균이 0인 정규 분포(보통 가우스라고 함)이다. 서로 다른 푸리에 성분은 상관 관계가 없다. 모드의 분산은 주어진 부피 내에서 각 파장이 섭동의 스펙트럼에 동일한 양의 파워(power)를 기여하는 방식으로 파장에만 의존한다. 푸리에 변환이 3차원이기 때문에, 이것은 어떤 부피 내에서 주어진 파동수 k를 갖는 모드의 수가 k3이라는 사실을 보상하기 위해 모드의 분산이 k-3로 간다는 것을 의미한다.
  • See cosmic microwave background and Low multipoles for details and references.