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Articles: 2'141'593
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04 December 2021
 
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Results 1 to 20 of 407 for query "A.A. Starobinsky". (0.02 sec.)

[    1    2    3    4    5    10    ]   Next
1.
Future and Origin of our Universe: Modern View
A.A. Starobinsky;
2 Dec 1999   /  Grav.Cosmol. 6 (2000) 157-163
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2.
Inflaton field potential producing the exactly flat spectrum of adiabatic perturbations
Alexei A. Starobinsky;
8 Jul 2005   /  JETP Lett. 82 (2005) 169-173
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3.
Robustness of the inflationary perturbation spectrum to trans-Planckian physics
A.A. Starobinsky;
3 Apr 2001   /  Pisma Zh.Eksp.Teor.Fiz. 73 (2001) 415-418; JETP Lett. 73 (2001) 371-374
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4.
How to determine an effective potential for a variable cosmological term
A.A. Starobinsky;
27 Oct 1998   /  JETP Lett. 68 (1998) 757-763; Pisma Zh.Eksp.Teor.Fiz. 68 (1998) 721-726
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5.
Large primordial gravitational wave background in a class of BSI Lambda-CDM models
J. Lesgourgues; D. Polarski; A. A. Starobinsky;
2 Jul 1998   /  Mon.Not.Roy.Astron.Soc. 308 (1999) 281-288
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6.
Inflation for Large Scale Structure
A.A. Starobinsky;
14 Aug 1998   /  In: "Large Scale Structure: Tracks and Traces", Proc. of the 12th Potsdam Cosmology Workshop (15-20 Sept. 1997), eds. V. Muller, S. Gottlober, J.P. Mucket, J. Wambsganss (Singapore: World Scientific), 1998, pp. 375-380.
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7.
Beyond the Simplest Inflationary Cosmological Models
A.A. Starobinsky;
23 Nov 1998   /  Grav.Cosmol. 4 (1998) 88-99; Grav.Cosmol.Suppl. 4 (1998) 88-99
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8.
Reconstruction of a scalar-tensor theory of gravity in an accelerating universe
B Boisseau; G Esposito-Farese; D Polarski; A A Starobinsky;
11 Sep 2000   /  Phys Rev Lett, 85 (11), 2236-9
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9.
Reconstruction of a scalar-tensor theory of gravity in an accelerating universe
B. Boisseau; G. Esposito-Farese; D. Polarski; A.A. Starobinsky;
21 Dec 1999   /  Phys.Rev.Lett. 85 (2000) 2236
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10.
The supercluster--void network III. The correlation function as a geometrical statistic
J. Einasto; M. Einasto; P. Frisch; S. Gottlöber; V. Müller; V. Saar; A. A. Starobinsky; D. Tucker;
14 Apr 1997
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11.
Asymptotic freedom in inflationary cosmology with a non-minimally coupled Higgs field
A.O. Barvinsky; A.Yu. Kamenshchik; C. Kiefer; A.A. Starobinsky; C. Steinwachs;
10 Apr 2009
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12.
Quasi-isotropic solution of the Einstein equations near a cosmological singularity for a two-fluid cosmological model
I.M. Khalatnikov; A.Yu. Kamenshchik; M. Martellini; A.A. Starobinsky;
29 Dec 2002   /  JCAP 0303 (2003) 001
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13.
Statefinder -- a new geometrical diagnostic of dark energy
Varun Sahni; Tarun Deep Saini; A. A. Starobinsky; Ujjaini Alam;
30 Dec 2001   /  JETP Lett. 77 (2003) 201-206; Pisma Zh.Eksp.Teor.Fiz. 77 (2003) 249-253
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14.
Detectability of the primordial origin of the gravitational wave background in the Universe
J. Lesgourgues; D. Polarski; S. Prunet & A. A. Starobinsky;
24 Jun 1999   /  Astron.Astrophys. 359 (2000) 414
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15.
CDM models with a BSI steplike primordial spectrum and a cosmological constant
J.Lesgourgues; D.Polarski; A.A.Starobinsky;
12 Nov 1997   /  Mon.Not.Roy.Astron.Soc. 297 (1998) 769-776
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16.
A built-in scale in the initial spectrum of density perturbations: evidence from cluster and CMB data
F. Atrio-Barandela; J. Einasto; S. Gottlöber; V. Müller; A. A. Starobinsky;
13 Aug 1997   /  JETP Lett. 66 (1997) 397-403
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17.
A 120-Mpc Periodicity in the Three-Dimensional Distribution of Galaxy Superclusters
J. Einasto; M. Einasto; S. Gottlöber; V. Müller; V. Saar; A. A. Starobinsky; E. Tago; D. Tucker; H. Andernach; P. Frisch;
6 Dec 1996   /  Nature 385 (1997) 139 - 141
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18.
Non-Gaussianity as a Probe of the Physics of the Primordial Universe and the Astrophysics of the Low Redshift Universe
E.Komatsu; N.Afshordi; N.Bartolo; D.Baumann; J.R.Bond; E.I.Buchbinder; C.T.Byrnes; X.Chen; D.J.H.Chung; A.Cooray; P.Creminelli; N.Dalal; O.Dore; R.Easther; A.V.Frolov; J.Khoury; W.H.Kinney; L.Kofman; K.Koyama; L.Leblond; J.-L.Lehners; J.E.Lidsey; M.Liguori; E.A.Lim; A.Linde; D.H.Lyth; J.Maldacena; S.Matarrese; L.McAllister; P.McDonald; S.Mukohyama; B.Ovrut; H.V.Peiris; A.Riotto; Y.Rodriguez; M.Sasaki; R.Scoccimarro; D.Seery; E.Sefusatti; U.Seljak; L.Senatore; S.Shandera; E.P.S.Shellard; E.Silverstein; A.Slosar; K.M.Smith; A.A.Starobinsky; P.J.Steinhardt; F.Takahashi; M.Tegmark; A.J.Tolley; L.Verde; B.D.Wandelt; D.Wands; S.Weinberg; M.Wyman; A.P.S.Yadav; M.Zaldarriaga;
27 Feb 2009
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19.
Cosmological constraints from Archeops
A. Benoit; P. Ade; A. Amblard; R. Ansari; E. Aubourg; S. Bargot; J. G. Bartlett; J.-Ph. Bernard; R. S. Bhatia; A. Blanchard; J. J. Bock; A. Boscaleri; F. R. Bouchet; A. Bourrachot; P. Camus; F. Couchot; P. de Bernardis; J. Delabrouille; F.-X. Desert; O. Dore; M. Douspis; L. Dumoulin; X. Dupac; P. Filliatre; P. Fosalba; K. Ganga; F. Gannaway; B. Gautier; M. Giard; Y. Giraud-Heraud; R. Gispert; L. Guglielmi; J.-Ch. Hamilton; S. Hanany; S. Henrot-Versille; J. Kaplan; G. Lagache; J.-M. Lamarre; A. E. Lange; J. F. Macias-Perez; K. Madet; B. Maffei; Ch. Magneville; D. P. Marrone; S. Masi; F. Mayet; A. Murphy; F. Naraghi; F. Nati; G. Patanchon; G. Perrin; M. Piat; N. Ponthieu; S. Prunet; J.-L. Puget; C. Renault; C. Rosset; D. Santos; A. Starobinsky; I. Strukov; R. V. Sudiwala; R. Teyssier; M. Tristram; C. Tucker; J.-C. Vanel; D. Vibert; E. Wakui; D. Yvon ( CRTBT Grenoble; Cardiff Univ.; PCC Paris; LAL Orsay; DAPNIA/SPP Saclay; OMP Toulouse; IAS Orsay; Caltech Pasadena; JPL Pasadena; IROE-CNR Firenze; IAP Paris; La Sapienza Univ. Roma; LAOG Grenoble; Astrophys. Oxford; CSNSM Orsay; CESR Toulouse; ISN Grenoble; IPAC Pasadena; Minnesota Univ. Minneapolis; National Univ. Maynooth; Landau Institute Moscow; Space Research Institute Moscow; DAPNIA/SAP Saclay;
14 Oct 2002   /  Astron.Astrophys. 399 (2003) L25-L30
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20.
The Cosmic Microwave Background Anisotropy Power Spectrum measured by Archeops
A. Benoit; P. Ade; A. Amblard; R. Ansari; E. Aubourg; S. Bargot; J. G. Bartlett; J.-Ph. Bernard; R. S. Bhatia; A. Blanchard; J. J. Bock; A. Boscaleri; F. R. Bouchet; A. Bourrachot; P. Camus; F. Couchot; P. de Bernardis; J. Delabrouille; F.-X. Desert; O. Dore; M. Douspis; L. Dumoulin; X. Dupac; P. Filliatre; P. Fosalba; K. Ganga; F. Gannaway; B. Gautier; M. Giard; Y. Giraud-Heraud; R. Gispert; L. Guglielmi; J.-Ch. Hamilton; S. Hanany; S. Henrot-Versille; J. Kaplan; G. Lagache; J.-M. Lamarre; A. E. Lange; J. F. Macias-Perez; K. Madet; B. Maffei; Ch. Magneville; D. P. Marrone; S. Masi; F. Mayet; A. Murphy; F. Naraghi; F. Nati; G. Patanchon; G. Perrin; M. Piat; N. Ponthieu; S. Prunet; J.-L. Puget; C. Renault; C. Rosset; D. Santos; A. Starobinsky; I. Strukov; R. V. Sudiwala; R. Teyssier; M. Tristram; C. Tucker; J.-C. Vanel; D. Vibert; E. Wakui; D. Yvon ( CRTBT Grenoble; Cardiff Univ.; PCC Paris; LAL Orsay; DAPNIA/SPP Saclay; OMP Toulouse; IAS Orsay; Caltech Pasadena; JPL Pasadena; IROE-CNR Firenze; IAP Paris; La Sapienza Univ. Roma; LAOG Grenoble; Astrophys. Oxford; CSNSM Orsay; CESR Toulouse; ISN Grenoble; IPAC Pasadena; Minnesota Univ. Minneapolis; National Univ. Maynooth; Landau Institute Moscow; Space Research Institute Moscow; DAPNIA/SAP Saclay;
14 Oct 2002   /  Astron.Astrophys. 399 (2003) L19-L23
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