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The detection of microwave fields at single-photon power levels is a much sought-after technology, with practical applications in nanoelectronics and quantum information science.
A. N. Cleland, D. Esteve, C. Urbina, and M. H. Devoret, Very low noise photodetector based on the single electron transistor, Appl. Phys. Lett. 61
1992
Earlier work this paper cites.
S. L. Sondhi, S. Girvin, J. Carini, and D. Shahar, Continuous quantum phase transitions, Rev. Mod. Phys. 69
1997
Earlier work this paper cites.
R. Loudon, The quantum theory of light (OUP Oxford, 2000)
2000
Earlier work this paper cites.
P. Kok and S. L. Braunstein, Postselected versus nonpostselected quantum teleportation using parametric down-conversion, Phys. Rev. A 61
2000
Earlier work this paper cites.
O. Astafiev and S. Komiyama, Single-Photon Detection with Quantum Dots in the Far-Infrared/Submillimeter-Wave Range, in Electron Transport in Quantum Dots , edited by J. P. Bird (Springer US, Boston, MA, 2003) pp. 363–396
2003
Earlier work this paper cites.
S. Dusuel and J. Vidal, Finite-size scaling exponents of the Lipkin-Meshkov-Glick model, Phys. Rev. Lett. 93
2004
Earlier work this paper cites.
R. Alléaume, F. Treussart, J.-M. Courty, and J.-F. Roch, Photon statistics characterization of a single-photon source, New J. Phys. 6
2004
Earlier work this paper cites.
A. R. Rossi, S. Olivares, and M. G. A. Paris, Photon statistics without counting photons, Phys. Rev. A 70
2004
Earlier work this paper cites.
H. Lee, U. Yurtsever, P. Kok, G. M. Hockney, C. Adami, S. L. Braunstein, and J. P. Dowling, Towards photostatistics from photon-number discriminating detectors, J. Mod. Opt. 51
2004
Earlier work this paper cites.
K. Irwin and G. Hilton, Transition-edge sensors, in Cryogenic Particle Detection , edited by C. Enss (Springer Berlin Heidelberg, Berlin, Heidelberg, 2005) pp. 63–150
2005
Earlier work this paper cites.
P. Walther, K. J. Resch, T. Rudolph, E. Schenck, H. Weinfurter, V. Vedral, M. Aspelmeyer, and A. Zeilinger, Experimental one-way quantum computing, Nature 434
2005
Earlier work this paper cites.
M. Wallquist, V. S. Shumeiko, and G. Wendin, Selective coupling of superconducting qubits via tunable stripline cavity, Phys. Rev. B 74
2006
Earlier work this paper cites.
J. Clarke and A. I. Braginski, The SQUID Handbook: Fundamentals and Technology of SQUIDs and SQUID Systems (John Wiley & Sons, 2006)
2006
Earlier work this paper cites.
M. Marthaler and M. Dykman, Quantum interference in the classically forbidden region: A parametric oscillator, Phys. Rev. A 76
2007
Earlier work this paper cites.
M. Dykman, Critical exponents in metastable decay via quantum activation, Phys. Rev. E 75
2007
Earlier work this paper cites.
C. Silberhorn, Detecting quantum light, Contemp. Phys. 48
2007
Earlier work this paper cites.
P. Kok, W. J. Munro, K. Nemoto, T. C. Ralph, J. P. Dowling, and G. J. Milburn, Linear optical quantum computing with photonic qubits, Rev. Mod. Phys. 79
2007
Earlier work this paper cites.
K. Huang, Statistical mechanics (John Wiley & Sons, 2008)
2008
Earlier work this paper cites.
P. Zanardi, M. G. A. Paris, and L. Campos Venuti, Quantum criticality as a resource for quantum estimation, Phys. Rev. A 78
2008
Earlier work this paper cites.
R. Vijay, M. Devoret, and I. Siddiqi, The Josephson bifurcation amplifier, Rev. Sci. Instrum. 80
2009
Earlier work this paper cites.
G. Buller and R. Collins, Single-photon generation and detection, Meas. Sci. Technol. 21
2009
Earlier work this paper cites.
R. H. Hadfield, Single-photon detectors for optical quantum information applications, Nat. Photonics 3
2009
Earlier work this paper cites.
C. M. Wilson, T. Duty, M. Sandberg, F. Persson, V. Shumeiko, and P. Delsing, Photon Generation in an Electromagnetic Cavity with a Time-Dependent Boundary, Phys. Rev. Lett. 105
2010
Earlier work this paper cites.
C. M. Wilson, G. Johansson, A. Pourkabirian, M. Simoen, J. R. Johansson, T. Duty, F. Nori, and P. Delsing, Observation of the dynamical Casimir effect in a superconducting circuit, Nature 479
2011
Earlier work this paper cites.
Y.-F. Chen, D. Hover, S. Sendelbach, L. Maurer, S. T. Merkel, E. J. Pritchett, F. K. Wilhelm, and R. McDermott, Microwave photon counter based on Josephson junctions, Phys. Rev. Lett. 107
2011
Earlier work this paper cites.
G. Catelani, J. Koch, L. Frunzio, R. J. Schoelkopf, M. H. Devoret, and L. I. Glazman, Quasiparticle Relaxation of Superconducting Qubits in the Presence of Flux, Phys. Rev. Lett. 106
2011
Earlier work this paper cites.
A. B. Zorin and Y. Makhlin, Period-doubling bifurcation readout for a Josephson qubit, Phys. Rev. B 83
2011
Earlier work this paper cites.
S. Komiyama, Single-photon detectors in the terahertz range, IEEE J. Sel. Top 17
2011
Earlier work this paper cites.
L. Bakemeier, A. Alvermann, and H. Fehske, Quantum phase transition in the Dicke model with critical and noncritical entanglement, Phys. Rev. A 85
2012
Earlier work this paper cites.
A. Poudel, R. McDermott, and M. G. Vavilov, Quantum efficiency of a microwave photon detector based on a current-biased Josephson junction, Phys. Rev. B 86
2012
Earlier work this paper cites.
V. Peano, M. Marthaler, and M. Dykman, Sharp tunneling peaks in a parametric oscillator: quantum resonances missing in the rotating wave approximation, Phys. Rev. Lett. 109
2012
Earlier work this paper cites.
M. Dykman, ed., Fluctuating Nonlinear Oscillators: From Nanomechanics to Quantum Superconducting Circuits (Oxford University Press, Oxford, United Kingdom, 2012)
2012
Earlier work this paper cites.
P. Addesso, G. Filatrella, and V. Pierro, Characterization of escape times of Josephson junctions for signal detection, Phys. Rev. E 85
2012
Cited alongside, same era.
M. Tsang, Quantum transition-edge detectors, Phys. Rev. A 88
2013
Cited alongside, same era.
A. Migdall, S. Polyakov, J. Fan, and J. Bienfang, eds., Single-Photon Generation and Detection: Experimental Methods in the Physical Sciences , Experimental Methods in the Physical Sciences, Vol. 45 (Elsevier/AP, Amsterdam, 2013)
2013
Cited alongside, same era.
W. Wustmann and V. Shumeiko, Parametric resonance in tunable superconducting cavities, Phys. Rev. B 87
2013
Cited alongside, same era.
P. Krantz, Y. Reshitnyk, W. Wustmann, J. Bylander, S. Gustavsson, W. D. Oliver, T. Duty, V. Shumeiko, and P. Delsing, Investigation of nonlinear effects in Josephson parametric oscillators used in circuit quantum electrodynamics, New J. Phys. 15
L. Garbe, M. Bina, A. Keller, M. G. A. Paris, and S. Felicetti, Critical quantum metrology with a finite-component quantum phase transition, Phys. Rev. Lett. 124
2020
Later among the works it cites.
A. Grimm, N. E. Frattini, S. Puri, S. O. Mundhada, S. Touzard, M. Mirrahimi, S. M. Girvin, S. Shankar, and M. H. Devoret, Stabilization and operation of a Kerr-cat qubit, Nature 584
2020
Later among the works it cites.
B. Karimi, F. Brange, P. Samuelsson, and J. P. Pekola, Reaching the ultimate energy resolution of a quantum detector, Nat. Commun. 11
2020
Later among the works it cites.
G.-H. Lee, D. K. Efetov, W. Jung, L. Ranzani, E. D. Walsh, T. A. Ohki, T. Taniguchi, K. Watanabe, P. Kim, D. Englund, and K. C. Fong, Graphene-based josephson junction microwave bolometer, Nature 586
2020
Later among the works it cites.
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2013
Cited alongside, same era.
S. Lamoreaux, K. Van Bibber, K. Lehnert, and G. Carosi, Analysis of single-photon and linear amplifier detectors for microwave cavity dark matter axion searches, Phys. Rev. D 88
2013
Cited alongside, same era.
U. C. Täuber, Critical Dynamics: A Field Theory Approach to Equilibrium and Non-Equilibrium Scaling Behavior (Cambridge University Press, Cambridge, 2014)
2014
Cited alongside, same era.
Z. R. Lin, K. Inomata, K. Koshino, W. D. Oliver, Y. Nakamura, J. S. Tsai, and T. Yamamoto, Josephson parametric phase-locked oscillator and its application to dispersive readout of superconducting qubits, Nat. Commun. 5
2014
Cited alongside, same era.
C. Eichler and A. Wallraff, Controlling the dynamic range of a Josephson parametric amplifier, EPJ Quantum Technol. 1
2014
Cited alongside, same era.
M.-J. Hwang, R. Puebla, and M. B. Plenio, Quantum phase transition and universal dynamics in the Rabi model, Phys. Rev. Lett. 115
2015
Cited alongside, same era.
Z. Lin, Y. Nakamura, and M. Dykman, Critical fluctuations and the rates of interstate switching near the excitation threshold of a quantum parametric oscillator, Phys. Rev. E 92
2015
Cited alongside, same era.
K. Macieszczak, M. Guta, I. Lesanovsky, and J. P. Garrahan, Dynamical phase transitions as a resource for quantum enhanced metrology, Phys. Rev. A 93
2016
Cited alongside, same era.
R. Kokkoniemi, J.-P. Girard, D. Hazra, A. Laitinen, J. Govenius, R. E. Lake, I. Sallinen, V. Vesterinen, M. Partanen, J. Y. Tan, K. W. Chan, K. Y. Tan, P. Hakonen, and M. Möttönen, Bolometer operating at the threshold for circuit quantum electrodynamics, Nature 586
2020
Later among the works it cites.
R. Lescanne, S. Deléglise, E. Albertinale, U. Réglade, T. Capelle, E. Ivanov, T. Jacqmin, Z. Leghtas, and E. Flurin, Irreversible qubit-photon coupling for the detection of itinerant microwave photons, Phys. Rev. X 10
2020
Later among the works it cites.
T. Braine, R. Cervantes, N. Crisosto, N. Du, S. Kimes, L. J. Rosenberg, G. Rybka, J. Yang, D. Bowring, A. S. Chou, R. Khatiwada, A. Sonnenschein, W. Wester, G. Carosi, N. Woollett, L. D. Duffy, R. Bradley, C. Boutan, M. Jones, B. H. LaRoque, N. S. Oblath, M. S. Taubman, J. Clarke, A. Dove, A. Eddins, S. R. O’Kelley, S. Nawaz, I. Siddiqi, N. Stevenson, A. Agrawal, A. V. Dixit, J. R. Gleason, S. Jois, P. Sikivie, J. A. Solomon, N. S. Sullivan, D. B. Tanner, E. Lentz, E. J. Daw, J. H. Buckley, P. M. Harrington, E. A. Henriksen, and K. W. Murch (ADMX Collaboration), Extended search for the invisible axion with the axion dark matter experiment, Phys. Rev. Lett. 124
2020
Later among the works it cites.
Y. Chu, S. Zhang, B. Yu, and J. Cai, Dynamic framework for criticality-enhanced quantum sensing, Phys. Rev. Lett. 126
2021
Later among the works it cites.
X. H. H. Zhang and H. U. Baranger, Driven-dissipative phase transition in a Kerr oscillator: From semiclassical 𝒫 𝒯 \mathcal{PT} symmetry to quantum fluctuations, Phys. Rev. A 103
2021
Later among the works it cites.
W. Khan, P. P. Potts, S. Lehmann, C. Thelander, K. A. Dick, P. Samuelsson, and V. F. Maisi, Efficient and continuous microwave photoconversion in hybrid cavity-semiconductor nanowire double quantum dot diodes, Nat. Commun. 12
2021
Later among the works it cites.
D. S. Golubev, E. V. Il’ichev, and L. S. Kuzmin, Single-photon detection with a Josephson junction coupled to a resonator, Phys. Rev. Applied 16
2021
Later among the works it cites.
A. L. Grimsmo, B. Royer, J. M. Kreikebaum, Y. Ye, K. O’Brien, I. Siddiqi, and A. Blais, Quantum metamaterial for broadband detection of single microwave photons, Phys. Rev. Applied 15
2021
Later among the works it cites.
N. P. de Leon, K. M. Itoh, D. Kim, K. K. Mehta, T. E. Northup, H. Paik, B. S. Palmer, N. Samarth, S. Sangtawesin, and D. W. Steuerman, Materials challenges and opportunities for quantum computing hardware, Science 372
2021
Later among the works it cites.
I. Siddiqi, Engineering high-coherence superconducting qubits, Nat. Rev. Mater. 6
2021
Later among the works it cites.
A. V. Dixit, S. Chakram, K. He, A. Agrawal, R. K. Naik, D. I. Schuster, and A. Chou, Searching for dark matter with a superconducting qubit, Phys. Rev. Lett. 126
2021
Later among the works it cites.
C. Kutlu, A. F. van Loo, S. Uchaikin, A. N. Matlashov, D. Lee, S. Oh, J. Kim, W. Chung, Y. Nakamura, and Y. K. Semertzidis, Characterization of a flux-driven Josephson parametric amplifier with near quantum-limited added noise for axion search experiments, Supercond. Sci. Technol. 34
2021
Later among the works it cites.
A. Piedjou Komnang, C. Guarcello, C. Barone, C. Gatti, S. Pagano, V. Pierro, A. Rettaroli, and G. Filatrella, Analysis of Josephson junctions switching time distributions for the detection of single microwave photons, Chaos Solit. Fractals 142
2021
Later among the works it cites.
J.-H. Lü, W. Ning, X. Zhu, F. Wu, L.-T. Shen, Z.-B. Yang, and S.-B. Zheng, Critical quantum sensing based on the Jaynes-Cummings model with a squeezing drive, Phys. Rev. A 106
2022
Later among the works it cites.
K. Gietka, Squeezing by critical speeding up: Applications in quantum metrology, Phys. Rev. A 105
2022
Later among the works it cites.
O. Abah, G. De Chiara, M. Paternostro, and R. Puebla, Harnessing nonadiabatic excitations promoted by a quantum critical point: Quantum battery and spin squeezing, Phys. Rev. Res. 4
2022
Later among the works it cites.
T. Ilias, D. Yang, S. F. Huelga, and M. B. Plenio, Criticality-enhanced quantum sensing via continuous measurement, PRX Quantum 3
2022
Later among the works it cites.
M. Perelshtein, K. Petrovnin, V. Vesterinen, S. Hamedani Raja, I. Lilja, M. Will, A. Savin, S. Simbierowicz, R. Jabdaraghi, J. Lehtinen, L. Grönberg, J. Hassel, M. Prunnila, J. Govenius, G. Paraoanu, and P. Hakonen, Broadband continuous-variable entanglement generation using a Kerr-free Josephson metamaterial, Phys. Rev. Appl. 18
2022
Later among the works it cites.
G. Catelani and J. P. Pekola, Using materials for quasiparticle engineering, Mater. Quantum. Technol. 2
2022
Later among the works it cites.
E. T. Mannila, P. Samuelsson, S. Simbierowicz, J. T. Peltonen, V. Vesterinen, L. Grönberg, J. Hassel, V. F. Maisi, and J. P. Pekola, A superconductor free of quasiparticles for seconds, Nat. Phys. 18
2022
Later among the works it cites.
R. Di Candia, F. Minganti, K. V. Petrovnin, G. S. Paraoanu, and S. Felicetti, Critical parametric quantum sensing, npj Quantum Inf. 9
2023
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S.-B. Tang, H. Qin, B.-B. Liu, D.-Y. Wang, K. Cui, S.-L. Su, L.-L. Yan, and G. Chen, Enhancement of quantum sensing in a cavity-optomechanical system around the quantum critical point, Phys. Rev. A 108
2023
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K. V. Petrovnin, M. R. Perelshtein, T. Korkalainen, V. Vesterinen, I. Lilja, G. S. Paraoanu, and P. J. Hakonen, Generation and structuring of multipartite entanglement in a Josephson parametric system, Adv. Quant. Technol. 6
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