Fetching the paper…
Reading the bibliography…
The ability to generate particles from the quantum vacuum is one of the most profound consequences of Heisenberg's uncertainty principle.
Einstein, A (1907), “Relativitätsprinzip und die aus demselben gezogenen folgerunge,” Jahrb. Radioact. Elect. 4
1907
Earlier work this paper cites.
Painlevé, P (1921), “La mécanique classique et la théorie de la relativité,” C.R. Hebd. Seances Acad. Sci. 173
1921
Earlier work this paper cites.
Law, C K (1994), “Resonance response of the quantum vacuum to an oscillating boundary,” Phys. Rev. Lett. 73
1931
Earlier work this paper cites.
Einstein, A, B. Podolsky, and N. Rosen (1935), “Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?” Phys. Rev. 47
1935
Earlier work this paper cites.
Lamb, W E, and R. C. Retherford (1947), “Fine Structure of the Hydrogen Atom by a Microwave Method,” Phys. Rev. 72
1947
Earlier work this paper cites.
Casimir, H B G (1948), “On the attraction between two perfectly conducting plates,” Proc. Koninkl. Ned. Akad. Wetenschap 51
1948
Earlier work this paper cites.
Schwinger, J (1951), “On Gauge Invariance and Vacuum Polarization,” Phys. Rev. 82
1951
Earlier work this paper cites.
Hanbury Brown, R, and R. Q. Twiss (1956), “Correlation between Photons in two Coherent Beams of Light,” Nature 177
1956
Earlier work this paper cites.
DeWitt, B S (1967), “Quantum Theory of Gravity i. The Canonical Theory,” Phys. Rev. 160
1967
Earlier work this paper cites.
Moore, G T (1970), “Quantum theory of the electromagnetic field in a variable-length one-dimensional cavity,” J. Math. Phys. 11
1970
Earlier work this paper cites.
Hawking, S W (1972), “Black Holes in General Relativity,” Commun. Math. Phys. 25
1972
Earlier work this paper cites.
Bardeen, J M, B. Carter, and S. W. Hawking (1973), “The four laws of black hole mechanics,” Commun. Math. Phys. 31
1973
Earlier work this paper cites.
Bekenstein, J D (1973), “Black Holes and Entropy,” Phys. Rev. D 7
1973
Earlier work this paper cites.
Hawking, S W (1974), “Black hole explosions?” Nature 248
1974
Earlier work this paper cites.
Boulware, D G (1975), “Quantum field theory in Schwarzschild and Rindler spaces,” Phys. Rev. D 11
1975
Earlier work this paper cites.
Hawking, S W (1975), “Particle Creation by Black Holes,” Commun. Math. Phys. 43
1975
Earlier work this paper cites.
Boulware, D G (1976), “Hawking radiation and thin shells,” Phys. Rev. D 13
1976
Earlier work this paper cites.
Fulling, S A, and P. C. W. Davies (1976), “Radiation from a Moving Mirror in Two Dimensional Space-Time: Conformal Anomaly,” Proc. R. Soc. London, Ser. A 348
1976
Earlier work this paper cites.
Hartle, J B, and S. W. Hawking (1976), “Path-integral derivation of black-hole radiance,” Phys. Rev. D 13
1976
Earlier work this paper cites.
Page, D N (1976), “Particle emission rates from a black hole: Masssless particles from an uncharged, nonrotating hole,” Phys. Rev. D 13
1976
Earlier work this paper cites.
Unruh, W G (1976), “Notes on black-hole evaporation,” Phys. Rev. D 14
1976
Earlier work this paper cites.
Wahlsten, S, S. Rudner, and T. Claeson (1977), “Parametric amplification in arrays of Josephson tunnel junctions,” Appl. Phys. Lett. 30
1977
Earlier work this paper cites.
Davies, P C W (1978), “Thermodynamics of black holes,” Rep. Prog. Phys. 41
1978
Earlier work this paper cites.
Letaw, J R, and J. D. Pfautsch (1980), “Quantized scalar field in rotating coordinates,” Phys. Rev. D 22
1980
Earlier work this paper cites.
Unruh, W G (1981), “Experimental Black-Hole Evaporation,” Phys. Rev. Lett. 46
1981
Earlier work this paper cites.
Barone, A, and G. Paternó (1982), Physics and Applications of the Josephson Effect (Wiley)
1982
Earlier work this paper cites.
Birrell, N D, and P. C. W. Davies (1982), Quantum fields in curved spacetime (Cambridge University Press)
1982
Earlier work this paper cites.
Caves, C M (1982), “Quantum limits on noise in linear amplifiers,” Phys. Rev. D 26
1982
Earlier work this paper cites.
Barnett, S M, and P. L. Knight (1985), “Thermofield analysis of squeezing and statistical mixtures in quantum optics,” J. Opt. Soc. Am. B 2
1985
Earlier work this paper cites.
Slusher, R E, L. W. Hollberg, B. Yurke, J. C. Mertz, and J. F. Valley (1985), “Observation of Squeezed States Generated by Four-Wave Mixing in an Optical Cavity,” Phys. Rev. Lett. 55
1985
Earlier work this paper cites.
Aguado, R, and L. P. Kouwenhoven (2000), “Double Quantum Dots as Detectors of High-Frequency Quantum Noise in Mesoscopic Conductors,” Phys. Rev. Lett. 84
1986
Earlier work this paper cites.
Likharev, K K (1986), Dynamics of Josephson Junctions and Circuits (Gordon and Breach Science)
1986
Earlier work this paper cites.
Yurke, B, and M. Potasek (1987), “Obtainment of thermal noise from a pure quantum state,” Phys. Rev. A 36
1987
Earlier work this paper cites.
Reid, M D, and P. D. Drummond (1988), “Quantum Correlations of Phase in Nondegenerate Parametric Oscillation,” Phys. Rev. Lett. 60
1988
Earlier work this paper cites.
Yurke, B, P. G. Kaminsky, R. E. Miller, E. A. Whittaker, A. D. Smith, A. H. Silver, and R. W. Simon (1988), “Observation of 4.2-K equilibrium-noise squeezing via a Josephson-parametric amplifier,” Phys. Rev. Lett. 60
1988
Earlier work this paper cites.
Barnett, S M, and S. J. D. Phoenix (1989), “Entropy as a measure of quantum optical correlation,” Phys. Rev. A. 40
1989
Earlier work this paper cites.
Weinberg, S (1989), “The cosmological constant problem,” Rev. Mod. Phys. 61
1989
Earlier work this paper cites.
Yablonovitch, E (1989), “Accelerating reference frame for electromagnetic waves in a rapidly growing plasma: Unruh-Davies-Fulling-DeWitt radiation and the nonadiabatic Casimir effect,” Phys. Rev. Lett. 62
1989
Earlier work this paper cites.
Yurke, B, L. R. Corruccini, P. G. Kaminsky, L. W. Rupp, A. D. Smith, A. H. Silver, R. W. Simon, and E. A. Whittaker (1989), “Observation of parametric amplification and deamplification in a Josephson parametric amplifier,” Phys. Rev. A 39
1989
Earlier work this paper cites.
Case, W B (1990), “The pump of a swing from the seated position,” Am. J. Phys. 58
1990
Earlier work this paper cites.
Dodonov, V V, A. B. Klimov, and V. I. Man’ko (1990), “Generation of squeezed states in a resonator with a moving wall,” Physics Letters A 149
1990
Earlier work this paper cites.
Movshovich, R, B. Yurke, P. G. Kaminsky, A. D. Smith, A. H. Silver, R. W. Simon, and M. V. Schneider (1990), “Obervation of Zero-Point Noise Squeezing via a Josephson-Parametric Amplifier,” Phys. Rev. Lett. 65
1990
Earlier work this paper cites.
Barnett, S M, and S. J. D. Phoenix (1991), “Information theory, squeezing, and quantum correlations,” Phys. Rev. A 44
1991
Earlier work this paper cites.
Jacobson, T A (1991), “Black-hole evaporation and ultrashort distances,” Phys. Rev. D 44
1991
Earlier work this paper cites.
Zou, X Y, L. J. Wang, and L. Mandel (1991), “Induced Coherence and Indistinguishability in Optical Interference,” Phys. Rev. Lett. 67
1991
Earlier work this paper cites.
Dodonov, V V, A. B. Klimov, and D. E. Nikonov (1993), “Quantum phenomena in resonators with moving walls,” J. Math. Phys. 34
1993
Earlier work this paper cites.
Milonni, P W (1993), The Quantum Vacuum: An Introduction to Quantum Electrodynamics (Acad. Press)
1993
Earlier work this paper cites.
Smithey, D T, M. Beck, M. G. Raymer, and A. Faridani (1993), “Measurement of the Wigner Distribution and the Density Matrix of a Light Mode Using Optical Homodyne Tomography: Application to Squeezed States and the Vacuum,” Phys. Rev. Lett. 70
1993
Earlier work this paper cites.
Anglin, J R, R. Laflamme, W. H. Zurek, and J. P. Paz (1995), “Decoherence and recoherence in an analogue of the black hole information paradox,” Phys. Rev. D 52
1995
Earlier work this paper cites.
Cole, C K, and W. C. Schieve (1995), “Radiation modes of a cavity with a moving boundary,” Phys. Rev. A 52
1995
Earlier work this paper cites.
Dodonov, V V (1995), “Photon creation and excitation of a detector in a cavity with a resonantly vibrating wall,” Phys. Lett. A 207
1995
Earlier work this paper cites.
Hartle, J B (1995), “Spacetime information,” Phys. Rev. D 51
1995
Earlier work this paper cites.
Johnston, H, and S. Sarkar (1995), “Moving mirrors and time-varying dielectrics,” Phys. Rev. A 51
1995
Earlier work this paper cites.
Dodonov, V V, and A. B. Klimov (1996), “Generation and detection of photons in a cavity with a resonantly oscillating boundary,” Phys. Rev. A 53
1996
Earlier work this paper cites.
Lambrecht, A, M.-T. Jaekel, and S. Reynaud (1996), “Motion induced radiation from a vibrating cavity,” Phys. Rev. Lett. 77
1996
Earlier work this paper cites.
Lloyd, S (1996), “Universal Quantum Simulators,” Science 273
1996
Earlier work this paper cites.
Méplan, O, and C. Gignoux (1996), “Exponential growth of the energy of a wave in a 1d vibrating cavity: Application to the quantum vacuum,” Phys. Rev. Lett. 76
1996
Earlier work this paper cites.
Neto Maia, P A, and L. A. S. Machado (1996), “Quantum radiation generated by a moving mirror in free space,” Phys. Rev. A 54
1996
Earlier work this paper cites.
Bouwmeester, D, J.-W. Pan, K. Mattle, M. Eibl, H. Weinfurter, and A. Zeilinger (1997), “Experimental quantum teleportation,” Nature 390
1997
Earlier work this paper cites.
Breitenbach, G, S. Schiller, and J. Mlynek (1997), “Measurement of the quantum states of squeeed light,” Nature 387
1997
Cited alongside, same era.
Ford, L H, and N. F. Svaiter (1997), “Cosmological and black hole horizon fluctuations,” Phys. Rev. D 56
1997
Cited alongside, same era.
Ji, J-Y, H.-H. Jung, J.-W. Park, and K.-S. Soh (1997), “Production of photons by the parametric resonance in the dynamical Casimir effect,” Phys. Rev. A 56
1997
Cited alongside, same era.
Lamoreaux, S K (1997), “Demonstration of the Casimir Force in the 0.6 to 6 μ \mu m Range,” Phys. Rev. Lett. 78
1997
Cited alongside, same era.
Chow, E, P. Delsing, and D. B. Haviland (1998), “Length-Scale Dependence of the Superconducting-to-Insulator Quantum Phase Transition in One Dimension,” Phys. Rev. Lett. 81
1998
Cited alongside, same era.
Clarke, J, and F. K. Wilhelm (2008), “Superconducting quantum bits,” Nature 453
2008
Later among the works it cites.
Crispino, L C B, A. Higuchi, and G. E. A. Matas (2008), “The Unruh effect and its applications,” Rev. Mod. Phys. 80
2008
Later among the works it cites.
Fragner, A, M. Göppl, J. M. Fink, M. Baur, R. Bianchetti, P. J. Leek, A. Blais, and A. Wallraff (2008), “Resolving Vacuum Fluctuations in an Electrical Circuit by Measuring the Lamb Shift,” Science 322
2008
Later among the works it cites.
Hofheinz, M, E. M. Weig, M. Ansmann, R. C. Bialczak, E. Lucero, M. Neeley, A. D. O. O’Connell, H. Wang, J. M. Martinis, and A. N. Cleland (2008), “Generation of Fock states in a superconducting quantum circuit,” Nature 454
2008
Later among the works it cites.
Palacios-Laloy, A, F. Nguyen, F. Mallet, P. Bertet, D. Vion, and D. Esteve (2008), “Tunable resonators for quantum circuits,” J. Low Temp. Phys. 151
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Dalvit, D A R, and F. D. Mazzitelli (1998), “Renormalization-group approach to the dynamical Casimir effect,” Phys. Rev. A 57
1998
Cited alongside, same era.
Dodonov, V V (1998), “Dynamical Casimir effect in a nondegenerate cavity with losses and detuning,” Phys. Rev. A 58
1998
Cited alongside, same era.
Furusawa, A, J. L. Sorensen, S. L. Braunstein, C. A. Fuchs, H. J. Kimble, and E. S. Polzik (1998), “Unconditional Quantum Teleportation,” Science 282
1998
Cited alongside, same era.
Jacobson, T A, and G. E. Volovik (1998), “Event horizons and ergoregions in 3He,” Phys. Rev. D 58
1998
Cited alongside, same era.
Schützhold, R, G. Plunien, and G. Soff (1998), “Trembling cavities in the canonical approach,” Phys. Rev. A 57
1998
Cited alongside, same era.
Weihs, G, T. Jennewein, C. Simon, H Weinfurter, and A Zeilinger (1998), “Violation of Bell’s Inequality under Strict Einstein Locality Conditions,” Phys. Rev. Lett. 81
1998
Cited alongside, same era.
Parentani, R (1999), “Hawking radiation from Feynman diagrams,” Phys. Rev. D 61
1999
Cited alongside, same era.
2008
Later among the works it cites.
Philbin, T G, C. Kuklewicz, S. Robertson, S. Hill, F. König, and U. Leonhardt (2008), “Fiber-Optical Analog of the Event Horizon,” Science 319
2008
Later among the works it cites.
Sandberg, M, C. M. Wilson, F. Persson, T. Bauch, G. Johansson, V. Shumeiko, T. Duty, and P. Delsing (2008), “Tuning the field in a microwave resonator faster than the photonlifetime,” Appl. Phys. Lett. 92
2008
Later among the works it cites.
Schoelkopf, R J, and S. M. Girvin (2008), “Wiring up quantum systems,” Nature 451
2008
Later among the works it cites.
Walls, D F, and G. J. Milburn (2008), Quantum optics , 2nd ed. (Springer, Berlin)
2008
Later among the works it cites.
Yamamoto, T, K. Inomata, M. Watanabe, K. Matsuba, T. Miyazaki, W. D. Oliver, Y. Nakamura, and J. S. Tsai (2008), “Flux-driven Josephson parametric amplifier,” Appl. Phys. Lett. 93
2008
Later among the works it cites.
Zhou, L, Z. R. Gong, Y. X. Liu, C. P. Sun, and F. Nori (2008), “Controllable scattering of photons inside a one-dimensional resonator waveguide,” Phys. Rev. Lett. 101
2008
Later among the works it cites.
Abdo, B, O. Suchoi, E. Segev, O. Shtempluck, M. Blencowe, and E. Buks (2009), “Intermodulation and parametric amplification in a superconducting stripline resonator integrated with a dc-SQUID,” Europhys. Lett. 85
2009
Later among the works it cites.
Agnesi, A, C. Braggio, G. Bressi, G. Carugno, F. Della Valle, G. Galeazzi, G. Messineo, F. Pirzio, G. Reali, G. Ruoso, D. Scarpa, and D. Zanello (2009), “MIR: An experiment for the measurement of the dynamical Casimir effect,” Journal of Physics: Conference Series 161
2009
Later among the works it cites.
Ansmann, M, H. Wang, R. C. Bialczak, M. Hofheinz, E. Lucero, M. Neeley, A. D. O. O’Connell, D. Sank, M. Weides, J. Wenner, A. N. Cleland, and J. M. Martinis (2009), “Violation of Bell’s inequality in Josephson phase qubits,” Nature 461
2009
Later among the works it cites.
Buluta, I, and F. Nori (2009), “Quantum Simulators,” Science 326
2009
Later among the works it cites.
De Liberato, S, D. Gerace, I. Carusotto, and C. Ciuti (2009), “Extracavity quantum vacuum radiation from a single qubit,” Phys. Rev. A 80
2009
Later among the works it cites.
Helmer, F, M. Mariantoni, E. Solano, and F. Marquardt (2009), “Quantum nondemolition photon detection in circuit QED and the quantum Zeno effect,” Phys. Rev. A 79
2009
Later among the works it cites.
Hofheinz, M, H. Wang, M. Ansmann, R. C. Bialczak, E. Lucero, M. Neeley, A. D. O. O’Connell, D. Sank, J. Wenner, J. M. Martinis, and A. N. Cleland (2009), “Synthesizing arbitrary quantum states in a superconducting resonator,” Nature 459
2009
Later among the works it cites.
Johansson, J R, G. Johansson, C. M. Wilson, and F. Nori (2009), “Dynamical Casimir effect in a superconducting coplanar waveguide,” Phys. Rev. Lett. 103
2009
Later among the works it cites.
Mathur, S D (2009), “The information paradox: a pedagogical introduction,” Class. Quant. Grav. 26
2009
Later among the works it cites.
Nation, P D, M. P. Blencowe, A. J. Rimberg, and E. Buks (2009), “Analogue Hawking Radiation in a dc-SQUID Array Transmission Line,” Phys. Rev. Lett. 103
2009
Later among the works it cites.
Naylor, W, S. Matsuki, T. Nishimura, and Y. Kido (2009), “Dynamical Casimir effect for TE and TM modes in a resonant cavity bisected by a plasma sheet,” Phys. Rev. A 80
2009
Later among the works it cites.
Romero, G, J. J. García-Ripoll, and E. Solano (2009), “Microwave Photon Detector in Circuit QED,” Phys. Rev. Lett. 102
2009
Later among the works it cites.
Vijay, R, M. H. Devoret, and I. Siddiqi (2009), “The Josephson bifurcation amplifier,” Rev. Sci. Instrum. 80
2009
Later among the works it cites.
Wang, H, M. Hofheinz, M. Ansmann, R. C. Bialczak, E. Lucero, M. Neeley, A. D. O. O’Connell, D. Sank, M. Weides, J. Wenner, A. N. Cleland, and J. M. Martinis (2009), “Decoherence Dynamics of Complex Photon States in a Superconducting Circuit,” Phys. Rev. Lett. 103
2009
Later among the works it cites.
Ashhab, S, and F. Nori (2010), “Qubit-oscillator systems in the ultrastrong-coupling regime and their potential for preparing nonclassical states,” Phys. Rev. A 81
2010
Later among the works it cites.
Belgiorno, F, S. L. Cacciatori, M. Clerici, V. Gorini, G. Ortenzi, L. Rizzi, E. Rubino, V. G. Sala, and D. Faccio (2010), “Hawking Radiation from Ultrashort Laser Pulse Filaments,” Phys. Rev. Lett. 105
2010
Later among the works it cites.
Bozyigit, D, C. Lang, L. Steffen, J. M. Fink, C. Eichler, M. Baur, R. Bianchetti, P. J. Leek, S. Filipp, M. P. da Silva, A. Blais, and A. Wallraff (2010), “Antibunching of microwave-frequency photons observed in correlation measurements using linear detectors,” Nature Phys. 7
2010
Later among the works it cites.
Clerk, A A, M. H. Devoret, S. M. Girvin, F. Marquardt, and R. J. Schoelkopf (2010), “Introduction to quantum noise, measurement, and amplification,” Rev. Mod. Phys. 82
2010
Later among the works it cites.
Dezael, F X, and A. Lambrecht (2010), “Analogue Casimir radiation using an optical parametric oscillator,” Europhys. Lett. 89
2010
Later among the works it cites.
DiCarlo, L, M. D. Reed, L. Sun, B. R. Johnson, J. M. Chow, J. M. Gambetta, L. Frunzio, S. M. Girvin, M. H. Devoret, and R. J. Schoelkopf (2010), “Preparation and measurement of three-qubit entanglement in a superconducting circuit,” Nature 467
2010
Later among the works it cites.
2010
Later among the works it cites.
Horstmann, B, B. Reznik, S. Fagnocchi, and J. I. Cirac (2010), “Hawking Radiation from an Acoustic Black Hole on an Ion Ring,” Phys. Rev. Lett. 104
2010
Later among the works it cites.
Johansson, J R, G. Johansson, C. M. Wilson, and F. Nori (2010), “Dynamical Casimir effect in superconducting microwave circuits,” Phys. Rev. A 82
2010
Later among the works it cites.
Leonhardt, U (2010), Essential Quantum Optics: From Quantum Measurements to Black Holes (Cambridge University Press)
2010
Later among the works it cites.
Mariantoni, M, E. P. Menzel, F. Deppe, M. Á. Araque Caballero, A. Baust, T. Niemczyk, E. Hoffman, E. Solano, A. Marx, and R. Gross (2010), “Planck Spectroscopy and Quantum Noise of Microwave Beam Splitters,” Phys. Rev. Lett. 105
2010
Later among the works it cites.
Menzel, E P, F. Deppe, M. Mariantoni, M. Á. Araque Caballero, A. Baust, T. Niemczyk, E. Hoffman, A. Marx, E. Solano, and R. Gross (2010), “Dual-Path State Reconstruction Scheme for Propagating Quantum Microwaves and Detector Noise Tomography,” Phys. Rev. Lett. 105
2010
Later among the works it cites.
Nataf, P, and C. Ciuti (2010), “Vacuum Degeneracy of a Circuit QED System in the Ultrastrong Coupling Regime,” Phys. Rev. Lett. 104
2010
Later among the works it cites.
Nation, P D, and M. P. Blencowe (2010), “The trilinear Hamiltonian: a zero dimensional model of Hawking radiation from a quantized source,” New J. Phys. 12
2010
Later among the works it cites.
2010
Later among the works it cites.
Niemczyk, T, F. Deppe, H. Huebl, E. P. Menzel, F. Hocke, M. J. Schwarz, J. J. Garcia-Ripoll, D. Zueco, T. Hummer, E. Solano, A. Marx, and R. Gross (2010), “Circuit quantum electrodynamics in the ultrastrong-coupling regime,” Nature Phys. 6
2010
Later among the works it cites.
O’Connell, A D O, M. Hofheinz, M. Ansmann, R. C. Bialczak, M. Lenander, E. Lucero, M. Neeley, D. Sank, H. Wang, M. Weides, J. Wenner, J. M. Martinis, and A. N. Cleland (2010), “Quantum ground state and single-phonon control of a mechanical resonator,” Nature 464
2010
Later among the works it cites.
Peropadre, B, P. Forn-Díaz, E. Solano, and J. J. García-Ripoll (2010), “Switchable Ultrastrong Coupling in Circuit QED,” Phys. Rev. Lett. 105
2010
Later among the works it cites.
da Silva, M P, D. Bozyigit, A. Wallraff, and A. Blais (2010), “Schemes for the observation of photon correlation functions in circuit QED with linear detectors,” Phys. Rev. A 82
2010
Later among the works it cites.
Wilson, C M, T. Duty, M. Sandberg, F. Persson, V. Shumeiko, and P. Delsing (2010), “Photon Generation in an Electromagnetic Cavity with a Time-Dependent Boundary,” Phys. Rev. Lett. 105
2010
Later among the works it cites.
Buluta, I, S. Ashhab, and F. Nori (2011), “Natural and artificial atoms for quantum computation,” Rep. Prog. Phys. 74
2011
Closest in time.
Chen, Y-F, D. Hover, S. Sendelbach, L. Maurer, S. T. Merkel, E. J. Pritchett, F. K. Wilhelm, and R. McDermott (2011), “Microwave photon counter based on josephson junctions,” Phys. Rev. Lett. 107
2011
Closest in time.
Dalvit, D A R (2011), “Shaking photons out of the vacuum,” Nature 479
2011
Closest in time.
Hoffman, A J, S. J. Srinivasan, L. Spietz, J. Aumentado, and A. A. Houck (2011), “Dispersive Photon Blockade in a Superconducting Circuit,” Phys. Rev. Lett. 107
2011
Closest in time.
2011
Closest in time.
Mariantoni, M, H. Wang, R. C. Bialczak, M. Lenander, E. Lucero, M. Neeley, A. D. O. O’Connell, D. Sank, M. Weides, J. Wenner, T. Yamamoto, Y. Yin, J. Zhao, J. M. Martinis, and A. N. Cleland (2011), “Photon shell game in three-resonator circuit quantum electrodynamics,” Nature Phys. 7
2011
Closest in time.
2011
Closest in time.
Schützhold, R, and W. G. Unruh (2011), “Comment on: Hawking Radiation from Ultrashort Laser Pulse Filaments,” Phys. Rev. Lett. 107
2011
Closest in time.
Wang, H, M. Mariantoni, R. C. Bialczak, M. Lenander, E. Lucero, M. Neeley, A. D. O. O’Connell, D. Sank, M. Weides, J. Wenner, T. Yamamoto, Y. Yin, J. Zhao, J. M. Martinis, and A. N. Cleland (2011), “Deterministic Entanglement of Photons in Two Superconducting Microwave Resonators,” Phys. Rev. Lett. 106
2011
Closest in time.
Weinfurtner, S, E. W. Tedford, M. C. J. Penrice, W. G. Unruh, and G. A. Lawrence (2011), “Measurement of Stimulated Hawking Emisson in an Analogue System,” Phys. Rev. Lett. 106
2011
Closest in time.
Wilson, C M, G. Johansson, A. Pourkabirian, M. Simonen, J. R. Johansson, T. Duty, F. Nori, and P. Delsing (2011), “Observation of the dynamical casimir effect in a superconducting circuit,” Nature 479
2011
Closest in time.
You, J Q, and F. Nori (2011), “Atomic physics and quantum optics using superconducting circuits,” Nature 474
2011
Closest in time.
Hong, C K, Z. Y. Ou, and L. Mandel (1987), “Measurement of Subpicosecond Time Intervals between Two Photons by Interference,” Phys. Rev. Lett. 59
2044
Closest in time.