Literature DB >> 19865083

A limit on the variation of the speed of light arising from quantum gravity effects.

A A Abdo1, M Ackermann, M Ajello, K Asano, W B Atwood, M Axelsson, L Baldini, J Ballet, G Barbiellini, M G Baring, D Bastieri, K Bechtol, R Bellazzini, B Berenji, P N Bhat, E Bissaldi, E D Bloom, E Bonamente, J Bonnell, A W Borgland, A Bouvier, J Bregeon, A Brez, M S Briggs, M Brigida, P Bruel, J M Burgess, T H Burnett, G A Caliandro, R A Cameron, P A Caraveo, J M Casandjian, C Cecchi, O Celik, V Chaplin, E Charles, C C Cheung, J Chiang, S Ciprini, R Claus, J Cohen-Tanugi, L R Cominsky, V Connaughton, J Conrad, S Cutini, C D Dermer, A de Angelis, F de Palma, S W Digel, B L Dingus, E do Couto E Silva, P S Drell, R Dubois, D Dumora, C Farnier, C Favuzzi, S J Fegan, J Finke, G Fishman, W B Focke, L Foschini, Y Fukazawa, S Funk, P Fusco, F Gargano, D Gasparrini, N Gehrels, S Germani, L Gibby, B Giebels, N Giglietto, F Giordano, T Glanzman, G Godfrey, J Granot, J Greiner, I A Grenier, M-H Grondin, J E Grove, D Grupe, L Guillemot, S Guiriec, Y Hanabata, A K Harding, M Hayashida, E Hays, E A Hoversten, R E Hughes, G Jóhannesson, A S Johnson, R P Johnson, W N Johnson, T Kamae, H Katagiri, J Kataoka, N Kawai, M Kerr, R M Kippen, J Knödlseder, D Kocevski, C Kouveliotou, F Kuehn, M Kuss, J Lande, L Latronico, M Lemoine-Goumard, F Longo, F Loparco, B Lott, M N Lovellette, P Lubrano, G M Madejski, A Makeev, M N Mazziotta, S McBreen, J E McEnery, S McGlynn, P Mészáros, C Meurer, P F Michelson, W Mitthumsiri, T Mizuno, A A Moiseev, C Monte, M E Monzani, E Moretti, A Morselli, I V Moskalenko, S Murgia, T Nakamori, P L Nolan, J P Norris, E Nuss, M Ohno, T Ohsugi, N Omodei, E Orlando, J F Ormes, M Ozaki, W S Paciesas, D Paneque, J H Panetta, D Parent, V Pelassa, M Pepe, M Pesce-Rollins, V Petrosian, F Piron, T A Porter, R Preece, S Rainò, E Ramirez-Ruiz, R Rando, M Razzano, S Razzaque, A Reimer, O Reimer, T Reposeur, S Ritz, L S Rochester, A Y Rodriguez, M Roth, F Ryde, H F-W Sadrozinski, D Sanchez, A Sander, P M Saz Parkinson, J D Scargle, T L Schalk, C Sgrò, E J Siskind, D A Smith, P D Smith, G Spandre, P Spinelli, M Stamatikos, F W Stecker, M S Strickman, D J Suson, H Tajima, H Takahashi, T Takahashi, T Tanaka, J B Thayer, J G Thayer, D J Thompson, L Tibaldo, K Toma, D F Torres, G Tosti, E Troja, Y Uchiyama, T Uehara, T L Usher, A J van der Horst, V Vasileiou, N Vilchez, V Vitale, A von Kienlin, A P Waite, P Wang, C Wilson-Hodge, B L Winer, K S Wood, X F Wu, R Yamazaki, T Ylinen, M Ziegler.   

Abstract

A cornerstone of Einstein's special relativity is Lorentz invariance-the postulate that all observers measure exactly the same speed of light in vacuum, independent of photon-energy. While special relativity assumes that there is no fundamental length-scale associated with such invariance, there is a fundamental scale (the Planck scale, l(Planck) approximately 1.62 x 10(-33) cm or E(Planck) = M(Planck)c(2) approximately 1.22 x 10(19) GeV), at which quantum effects are expected to strongly affect the nature of space-time. There is great interest in the (not yet validated) idea that Lorentz invariance might break near the Planck scale. A key test of such violation of Lorentz invariance is a possible variation of photon speed with energy. Even a tiny variation in photon speed, when accumulated over cosmological light-travel times, may be revealed by observing sharp features in gamma-ray burst (GRB) light-curves. Here we report the detection of emission up to approximately 31 GeV from the distant and short GRB 090510. We find no evidence for the violation of Lorentz invariance, and place a lower limit of 1.2E(Planck) on the scale of a linear energy dependence (or an inverse wavelength dependence), subject to reasonable assumptions about the emission (equivalently we have an upper limit of l(Planck)/1.2 on the length scale of the effect). Our results disfavour quantum-gravity theories in which the quantum nature of space-time on a very small scale linearly alters the speed of light.

Year:  2009        PMID: 19865083     DOI: 10.1038/nature08574

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  2 in total

1.  Probing spacetime foam with extragalactic sources.

Authors:  W A Christiansen; Y Jack Ng; H van Dam
Journal:  Phys Rev Lett       Date:  2006-02-07       Impact factor: 9.161

2.  Fermi observations of high-energy gamma-ray emission from GRB 080916C.

Authors:  A A Abdo; M Ackermann; M Arimoto; K Asano; W B Atwood; M Axelsson; L Baldini; J Ballet; D L Band; G Barbiellini; M G Baring; D Bastieri; M Battelino; B M Baughman; K Bechtol; F Bellardi; R Bellazzini; B Berenji; P N Bhat; E Bissaldi; R D Blandford; E D Bloom; G Bogaert; J R Bogart; E Bonamente; J Bonnell; A W Borgland; A Bouvier; J Bregeon; A Brez; M S Briggs; M Brigida; P Bruel; T H Burnett; D Burrows; G Busetto; G A Caliandro; R A Cameron; P A Caraveo; J M Casandjian; M Ceccanti; C Cecchi; A Celotti; E Charles; A Chekhtman; C C Cheung; J Chiang; S Ciprini; R Claus; J Cohen-Tanugi; L R Cominsky; V Connaughton; J Conrad; L Costamante; S Cutini; M Deklotz; C D Dermer; A de Angelis; F de Palma; S W Digel; B L Dingus; E do Couto E Silva; P S Drell; R Dubois; D Dumora; Y Edmonds; P A Evans; D Fabiani; C Farnier; C Favuzzi; J Finke; G Fishman; W B Focke; M Frailis; Y Fukazawa; S Funk; P Fusco; F Gargano; D Gasparrini; N Gehrels; S Germani; B Giebels; N Giglietto; P Giommi; F Giordano; T Glanzman; G Godfrey; A Goldstein; J Granot; J Greiner; I A Grenier; M-H Grondin; J E Grove; L Guillemot; S Guiriec; G Haller; Y Hanabata; A K Harding; M Hayashida; E Hays; J A Hernando Morat; A Hoover; R E Hughes; G Jóhannesson; A S Johnson; R P Johnson; T J Johnson; W N Johnson; T Kamae; H Katagiri; J Kataoka; A Kavelaars; N Kawai; H Kelly; J Kennea; M Kerr; R M Kippen; J Knödlseder; D Kocevski; M L Kocian; N Komin; C Kouveliotou; F Kuehn; M Kuss; J Lande; D Landriu; S Larsson; L Latronico; C Lavalley; B Lee; S-H Lee; M Lemoine-Goumard; G G Lichti; F Longo; F Loparco; B Lott; M N Lovellette; P Lubrano; G M Madejski; A Makeev; B Marangelli; M N Mazziotta; S McBreen; J E McEnery; S McGlynn; C Meegan; P Mészáros; C Meurer; P F Michelson; M Minuti; N Mirizzi; W Mitthumsiri; T Mizuno; A A Moiseev; C Monte; M E Monzani; E Moretti; A Morselli; I V Moskalenko; S Murgia; T Nakamori; D Nelson; P L Nolan; J P Norris; E Nuss; M Ohno; T Ohsugi; A Okumura; N Omodei; E Orlando; J F Ormes; M Ozaki; W S Paciesas; D Paneque; J H Panetta; D Parent; V Pelassa; M Pepe; M Perri; M Pesce-Rollins; V Petrosian; M Pinchera; F Piron; T A Porter; R Preece; S Rainò; E Ramirez-Ruiz; R Rando; E Rapposelli; M Razzano; S Razzaque; N Rea; A Reimer; O Reimer; T Reposeur; L C Reyes; S Ritz; L S Rochester; A Y Rodriguez; M Roth; F Ryde; H F-W Sadrozinski; D Sanchez; A Sander; P M Saz Parkinson; J D Scargle; T L Schalk; K N Segal; C Sgrò; T Shimokawabe; E J Siskind; D A Smith; P D Smith; G Spandre; P Spinelli; M Stamatikos; J-L Starck; F W Stecker; H Steinle; T E Stephens; M S Strickman; D J Suson; G Tagliaferri; H Tajima; H Takahashi; T Takahashi; T Tanaka; A Tenze; J B Thayer; J G Thayer; D J Thompson; L Tibaldo; D F Torres; G Tosti; A Tramacere; M Turri; S Tuvi; T L Usher; A J van der Horst; L Vigiani; N Vilchez; V Vitale; A von Kienlin; A P Waite; D A Williams; C Wilson-Hodge; B L Winer; K S Wood; X F Wu; R Yamazaki; T Ylinen; M Ziegler
Journal:  Science       Date:  2009-02-19       Impact factor: 47.728

  2 in total
  3 in total

1.  Astrophysics: Burst of support for relativity.

Authors:  Giovanni Amelino-Camelia
Journal:  Nature       Date:  2009-11-19       Impact factor: 49.962

Review 2.  Quantum-Spacetime Phenomenology.

Authors:  Giovanni Amelino-Camelia
Journal:  Living Rev Relativ       Date:  2013-06-12       Impact factor: 40.429

3.  Gravitational mass of positron from LEP synchrotron losses.

Authors:  Tigran Kalaydzhyan
Journal:  Sci Rep       Date:  2016-07-27       Impact factor: 4.379

  3 in total

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