Search Results - "Whiting, B. F."

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  1. 1

    Near-field radiative heat transfer between macroscopic planar surfaces by Ottens, R S, Quetschke, V, Wise, Stacy, Alemi, A A, Lundock, R, Mueller, G, Reitze, D H, Tanner, D B, Whiting, B F

    Published in Physical review letters (30-06-2011)
    “…Near-field radiation allows heat to propagate across a small vacuum gap at rates several orders of magnitude above that of far-field, blackbody radiation…”
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    Positive Energy Functional for Massless Scalars in Rotating Black Hole Backgrounds of Maximal Ungauged Supergravity by Cvetič, M., Gibbons, G. W., Pope, C. N., Whiting, B. F.

    Published in Physical review letters (12-06-2020)
    “…We outline a proof of the stability of a massless neutral scalar field ψ in the background of a wide class of four dimensional asymptotically flat rotating and…”
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    Normal mode simulation of prompt elastogravity signals induced by an earthquake rupture by Juhel, K, Montagner, J-P, Vallée, M, Ampuero, J P, Barsuglia, M, Bernard, P, Clévédé, E, Harms, J, Whiting, B F

    Published in Geophysical journal international (01-02-2019)
    “…As soon as an earthquake starts, the rupture and the propagation of seismic waves redistribute masses within the Earth. This mass redistribution generates in…”
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    Earthquake Early Warning Using Future Generation Gravity Strainmeters by Juhel, K., Ampuero, J. P., Barsuglia, M., Bernard, P., Chassande‐Mottin, E., Fiorucci, D., Harms, J., Montagner, J.‐P., Vallée, M., Whiting, B. F.

    “…Recent studies reported the observation of prompt elastogravity signals during the 2011 M9.1 Tohoku earthquake, recorded with broadband seismometers and…”
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    Phase effects in the diffraction of light : Beyond the grating equation by WISE, Stacy, QUETSCHKE, V, CLAUSNITZER, T, DESHPANDE, A. J, MUELLER, G, REITZE, D. H, TANNER, D. B, WHITING, B. F, CHEN, Y, TüNNERMANN, A, KLEY, E

    Published in Physical review letters (01-07-2005)
    “…Diffraction gratings affect the absolute phase of light in a way that is not obvious from the usual derivation of optical paths using the grating equation. For…”
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    Mode Stability For Massless Scalars In Five-Dimensional Black Hole Backgrounds by Cvetic, M, Pope, C. N, Whiting, B. F, Zhang, Haoyu

    Published 04-07-2022
    “…The mode stability of the Kerr black hole in four dimensions was demonstrated by Whiting in 1989, by separating the Teukolsky equation that describes…”
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    Supergravity Black Holes, Love Numbers and Harmonic Coordinates by Cvetic, M, Gibbons, G. W, Pope, C. N, Whiting, B. F

    Published 27-09-2021
    “…To perform realistic tests of theories of gravity, we need to be able to look beyond general relativity and evaluate the consistency of alternative theories…”
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  9. 9

    Positive Energy Functional for Massless Scalars in Rotating Black Hole Backgrounds of Maximal Ungauged Supergravity by Cvetic, M, Gibbons, G. W, Pope, C. N, Whiting, B. F

    Published 10-06-2020
    “…Phys. Rev. Lett. 124, 231102 (2020) We outline a proof of the stability of a massless neutral scalar field $\psi$ in the background of a wide class of four…”
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    Journal Article
  10. 10

    A gravitational wave observatory operating beyond the quantum shot-noise limit by Arai, K, Aufmuth, P, Aylott, B E, Ballmer, S, Beveridge, N, Britzger, M, Campsie, P, Chelkowski, S, Chen, Y, Coughlin, M, Cruise, A M, Daw, E J, Drever, R W P, Dwyer, S, Flanigan, M, Frei, M, Ghosh, S, Giampanis, S, Gill, C, González, G, Graef, C, Grant, A, Gras, S, Grosso, R, Hallam, J M, Hammer, D, Harstad, E D, Hong, T, Ingram, D R, Johnson, W W, Jones, D I, Jones, R, Kang, G, Kaufer, H, Kawabe, K, Kim, N, King, P J, Kozak, D, Landry, M, Leonor, I, Lormand, M, Lubinski, M, Macleod, D M, Mandel, I, Márka, Z, Mason, K, Matichard, F, Matzner, R A, Mcintyre, G, Mciver, J, Miller, J, Moe, B, Moesta, P, Mohanty, S D, Moreno, G, Mukherjee, S, Müller-ebhardt, H, Mytidis, A, Nawrodt, R, Nelson, J, Newton, G, O'reilly, B, Oh, J J, Pankow, C, Puncken, O, Ramet, C R, Raymond, V, Reed, C M, Riles, K, Roddy, S, Rodriguez, C, Romano, J D, Röver, C, Sammut, L, Santiago-prieto, I, Schilling, R, Searle, A C, Siemens, X, Singer, A, Sintes, A M, Smith, N D, Stochino, A, Strain, K A, Stuver, A L, Susmithan, S, Torres, C, Tseng, K, Vecchio, A, Veitch, J, Vyatchanin, S P, Wan, Y, Wang, X, Ward, R L, Weinstein, A J, Westphal, T, Wittel, H, Worden, J, Yamamoto, K, Yeaton-massey, D, Zweizig, J

    Published in Nature physics (01-12-2011)
    “…‘Squeezed light’ enables quantum noise in one aspect of light to be reduced by increasing the noise, or more accurately the quantum uncertainty, of a…”
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    Transient gravity perturbations induced by earthquake rupture by Harms, J., Ampuero, J.-P., Barsuglia, M., Chassande-Mottin, E., Montagner, J.-P., Somala, S. N., Whiting, B. F.

    Published in Geophysical journal international (01-06-2015)
    “…The static and transient deformations produced by earthquakes cause density perturbations which, in turn, generate immediate, long-range perturbations of the…”
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  12. 12

    An upper limit on the stochastic gravitational-wave background of cosmological origin by Abbott, B P, Abbott, R, Acernese, F, Adhikari, R, Ajith, P, Allen, B, Allen, G, Alshourbagy, M, Amin, R S, Anderson, S B, Anderson, W G, Antonucci, F, Aoudia, S, Arain, M A, Araya, M, Armandula, H, Armor, P, Arun, K G, Aso, Y, Aston, S, Astone, P, Aufmuth, P, Aulbert, C, Babak, S, Baker, P, Ballardin, G, Ballmer, S, Barker, C, Barker, D, Barone, F, Barr, B, Barriga, P, Barsotti, L, Barsuglia, M, Barton, M A, Bartos, I, Bassiri, R, Bastarrika, M, Bauer, Th S, Behnke, B, Beker, M, Benacquista, M, Betzwieser, J, Beyersdorf, P T, Bigotta, S, Bilenko, I A, Billingsley, G, Birindelli, S, Biswas, R, Bizouard, M A, Black, E, Blackburn, J K, Blackburn, L, Blair, D, Bland, B, Boccara, C, Bodiya, T P, Bogue, L, Bondu, F, Bonelli, L, Bork, R, Boschi, V, Bose, S, Bosi, L, Braccini, S, Bradaschia, C, Brady, P R, Braginsky, V B, Brand, J F J van den, Brau, J E, Bridges, D O, Brillet, A, Brinkmann, M, Brisson, V, Van Den Broeck, C, Brooks, A F, Brown, D A, Brummit, A, Brunet, G, Bullington, A, Bulten, H J, Buonanno, A, Burmeister, O, Buskulic, D, Byer, R L, Cadonati, L, Cagnoli, G, Calloni, E, Camp, J B, Campagna, E, Cannizzo, J, Cannon, K C, Canuel, B, Cao, J, Carbognani, F, Cardenas, L, Caride, S, Castaldi, G, Caudill, S, Cavaglià, M

    Published in Nature (London) (20-08-2009)
    “…A stochastic background of gravitational waves is expected to arise from a superposition of a large number of unresolved gravitational-wave sources of…”
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    First Search for Gravitational Waves from the Youngest Known Neutron Star by Abbott, B. P, Abernathy, M, Arain, M. A, Babak, S, Ballmer, S, Barker, D, Barton, M. A, Bassiri, R, Beveridge, N, Blackburn, J. K, Brau, J. E, Brinkmann, M, Cao, J, Caride, S, Cavaglià, M, Clark, J, Clayton, J. H, Conte, R, Coyne, D. C, Creighton, J. D. E, DeRosa, R, Donovan, F, Dumas, J.-C, Eberle, T, Effler, A, Evans, T, Feldbaum, D, Foley, S, Frei, M, Fricke, T. T, Fulda, P, Fyffe, M, Garofoli, J. A, Gretarsson, A. M, Hammer, D, Hanna, C, Harry, G. M, Haughian, K, Hirose, E, Howell, E, Hoyland, D, Kopparapu, R, Kringel, V, Krishnamurthy, S, Krishnan, B, Lastzka, N, Lodhia, D, Lück, H, Lundgren, A, MacInnis, M, Mak, C, Matichard, F, McClelland, D. E, McIntyre, G, Mercer, R. A, Meshkov, S, Miller, J, Moe, B, Morioka, T, Newton, G, Nolting, D, O'Dell, J, O'Reilly, B, Osthelder, C, Pan, Y, Papa, M. A, Pedraza, M, Pekowsky, L, Pitkin, M, Price, L. R, Radkins, H, Robertson, N. A, Robinson, E. L, Ryan, K, Sakosky, M, Saulson, P. R, Savage, R, Scott, J, Sintes, A. M, Slutsky, J, Susmithan, S, Sutton, P. J, Tanner, D. B, Thrane, E, Torrie, C. I, Vahlbruch, H, Vaishnav, B, Vallisneri, M, van der Sluys, M. V, Vecchio, A, Villar, A, Wallace, L, Wen, L, Wessels, P, West, M, Whelan, J. T, Willems, P. A, Winkelmann, L, Yoshida, S, Zhao, C

    Published in The Astrophysical journal (20-10-2010)
    “…We present a search for periodic gravitational waves from the neutron star in the supernova remnant Cassiopeia A. The search coherently analyzes data in a 12…”
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    Action principle and partition function for the gravitational field in black-hole topologies by WHITING, B. F, YORK, J. W. JR

    Published in Physical review letters (19-09-1988)
    “…The statistical mechanics of gravitational fields describing the black-hole topological sector, and the correspondence to thermodynamics, are considered. The…”
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    On The Perturbations of Gibbons-Maeda Black Holes in Einstein-Maxwell-Dilaton Theories by Pope, C. N, Rohrer, D. O, Whiting, B. F

    Published 17-05-2024
    “…The study of perturbations around black hole backgrounds in general relativity and Einstein-Maxwell theory has a long history, going back to the work of Regge…”
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