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Photon-number resolving (PNR) single-photon detectors are of interest for a wide range of applications in the emerging field of photon based quantum technologies.
M. Schmidt, M. von Helversen, M. López, F. Gericke, E. Schlottmann, T. Heindel, S. Kück, S. Reitzenstein, and J. Beyer, “Photon-number-resolving transition-edge sensors for the metrology of quantum light sources,” Journal of Low Temperature Physics , 2018. [Online]. Available: https://doi.org/10.1007/s10909-018-1932-1
1932
Earlier work this paper cites.
R. H. BROWN and R. Q. TWISS, “Correlation between photons in two coherent beams of light,” Nature , vol. 177, no. 4497, p. 27, 1956. [Online]. Available: https://www.nature.com/articles/177027a0.pdf
1956
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R. J. Glauber, “Coherent and incoherent states of the radiation field,” Physical Review , vol. 131, no. 6, pp. 2766–2788, 1963
1963
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E. Knill, R. Laflamme, and G. J. Milburn, “A scheme for efficient quantum computation with linear optics,” Nature , vol. 409, no. 6816, p. 46, 2001. [Online]. Available: https://www.nature.com/articles/35051009.pdf
2001
Earlier work this paper cites.
M. J. Fitch, B. C. Jacobs, T. B. Pittman, and J. D. Franson, “Photon-number resolution using time-multiplexed single-photon detectors,” Physical Review A , vol. 68, no. 4, p. 46, 2003
2003
Earlier work this paper cites.
A. E. Lita, A. J. Miller, and S. W. Nam, “Counting near-infrared single-photons with 95% efficiency,” Optics Express , vol. 16, no. 5, p. 3032, 2008
2008
Earlier work this paper cites.
J. L. O’Brien, A. Furusawa, and J. Vučković, “Photonic quantum technologies,” Nature Photonics , vol. 3, no. 12, p. 687, 2009. [Online]. Available: https://www.nature.com/articles/nphoton.2009.229.pdf
2009
Earlier work this paper cites.
A. J. Kerman, J. K. W. Yang, R. J. Molnar, E. A. Dauler, and K. K. Berggren, “Electrothermal feedback in superconducting nanowire single-photon detectors,” Physical Review B , vol. 79, no. 10, 2009
2009
Earlier work this paper cites.
E. A. Dauler, A. J. Kerman, B. S. Robinson, J. K. Yang, B. Voronov, G. Goltsman, S. A. Hamilton, and K. K. Berggren, “Photon-number-resolution with sub-30-ps timing using multi-element superconducting nanowire single photon detectors,” Journal of Modern Optics , vol. 56, no. 2-3, pp. 364–373, 2009
2009
Earlier work this paper cites.
B. Baek, A. E. Lita, V. Verma, and S. W. Nam, “Superconducting a-wxsi1 − - x nanowire single-photon detector with saturated internal quantum efficiency from visible to 1850 nm,” Applied Physics Letters , vol. 98, no. 25, p. 251105, 2011
2011
Earlier work this paper cites.
S. Jahanmirinejad and A. Fiore, “Proposal for a superconducting photon number resolving detector with large dynamic range,” Optics express , vol. 20, no. 5, pp. 5017–5028, 2012
2012
Cited alongside, same era.
S. Jahanmirinejad, G. Frucci, F. Mattioli, D. Sahin, A. Gaggero, R. Leoni, and A. Fiore, “Photon-number resolving detector based on a series array of superconducting nanowires,” Applied Physics Letters , vol. 101, no. 7, p. 072602, 2012
2012
Cited alongside, same era.
F. Marsili, V. B. Verma, J. A. Stern, S. Harrington, A. E. Lita, T. Gerrits, I. Vayshenker, B. Baek, M. D. Shaw, R. P. Mirin, and S. W. Nam, “Detecting single infrared photons with 93% system efficiency,” Nature Photonics , vol. 7, no. 3, p. 210, 2013. [Online]. Available: https://www.nature.com/articles/nphoton.2013.13.pdf
2013
Cited alongside, same era.
D. Sahin, A. Gaggero, Z. Zhou, S. Jahanmirinejad, F. Mattioli, R. Leoni, J. Beetz, M. Lermer, M. Kamp, S. Höfling, and A. Fiore, “Waveguide photon-number-resolving detectors for quantum photonic integrated circuits,” Applied Physics Letters , vol. 103, no. 11, p. 111116, 2013
D. Y. Vodolazov, Y. P. Korneeva, A. V. Semenov, A. A. Korneev, and G. N. Goltsman, “Vortex-assisted mechanism of photon counting in a superconducting nanowire single-photon detector revealed by external magnetic field,” Physical Review B , vol. 92, no. 10, p. 960, 2015
2015
Later among the works it cites.
M. Schwartz, U. Rengstl, T. Herzog, M. Paul, J. Kettler, S. L. Portalupi, M. Jetter, and P. Michler, “Generation, guiding and splitting of triggered single photons from a resonantly excited quantum dot in a photonic circuit,” Optics express , vol. 24, no. 3, pp. 3089–3094, 2016
2016
Later among the works it cites.
A. Meda, E. Losero, N. Samantaray, F. Scafirimuto, S. Pradyumna, A. Avella, I. Ruo-Berchera, and M. Genovese, “Photon-number correlation for quantum enhanced imaging and sensing,” Journal of Optics , vol. 19, no. 9, p. 094002, 2017
2017
Later among the works it cites.
T. Thomay, S. V. Polyakov, O. Gazzano, E. Goldschmidt, Z. D. Eldredge, T. Huber, V. Loo, and G. S. Solomon, “Simultaneous, full characterization of a single-photon state,” Physical Review X , vol. 7, no. 4, 2017
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2013
Cited alongside, same era.
G. Reithmaier, S. Lichtmannecker, T. Reichert, P. Hasch, K. Müller, M. Bichler, R. Gross, and J. J. Finley, “On-chip time resolved detection of quantum dot emission using integrated superconducting single photon detectors,” Scientific Reports , vol. 3, p. 1901, 2013. [Online]. Available: https://www.nature.com/articles/srep01901.pdf
2013
Cited alongside, same era.
F. E. Becerra, J. Fan, and A. Migdall, “Photon number resolution enables quantum receiver for realistic coherent optical communications,” Nature Photonics , vol. 9, no. 1, p. 48, 2015. [Online]. Available: https://www.nature.com/articles/nphoton.2014.280.pdf
2014
Cited alongside, same era.
F. Mattioli, S. Jahanmirinejad, Z. Zhou, A. Gaggero, G. Frucci, D. Sahin, R. Leoni, and A. Fiore, “Superconducting nanowires connected in series for photon number resolving functionality,” Journal of Physics: Conference Series , vol. 507, no. 4, p. 042024, 2014. [Online]. Available: http://iopscience.iop.org/article/10.1088/1742-6596/507/4/042024/pdf
2014
Cited alongside, same era.
Z. Zhou, S. Jahanmirinejad, F. Mattioli, D. Sahin, G. Frucci, A. Gaggero, R. Leoni, and A. Fiore, “Superconducting series nanowire detector counting up to twelve photons,” Optics express , vol. 22, no. 3, pp. 3475–3489, 2014
2014
Cited alongside, same era.
M. J. Applegate, O. Thomas, J. F. Dynes, Z. L. Yuan, D. A. Ritchie, and A. J. Shields, “Efficient and robust quantum random number generation by photon number detection,” Applied Physics Letters , vol. 107, no. 7, p. 071106, 2015
2015
Cited alongside, same era.
Cited in the paper.
2017
Later among the works it cites.
M. Sidorova, A. Semenov, H.-W. Hübers, I. Charaev, A. Kuzmin, S. Doerner, and M. Siegel, “Physical mechanisms of timing jitter in photon detection by current-carrying superconducting nanowires,” Physical Review B , vol. 96, no. 18, 2017
2017
Later among the works it cites.
E. Schmidt, K. Ilin, and M. Siegel, “Aln-buffered superconducting nbn nanowire single-photon detector on gaas,” IEEE Transactions on Applied Superconductivity , vol. 27, no. 4, pp. 1–5, 2017
2017
Later among the works it cites.
M. Schwartz, E. Schmidt, U. Rengstl, F. Hornung, S. Hepp, S. L. Portalupi, K. Ilin, M. Jetter, M. Siegel, and P. Michler, “Fully on-chip single-photon hanbury-brown and twiss experiment on a monolithic semiconductor-superconductor platform,” Nano Letters , 2018. [Online]. Available: https://pubs.acs.org/doi/10.1021/acs.nanolett.8b02794
2018
Closest in time.
H. Vural, S. L. Portalupi, J. Maisch, S. Kern, J. H. Weber, M. Jetter, J. Wrachtrup, R. Löw, I. Gerhardt, and P. Michler, “Two-photon interference in an atom–quantum dot hybrid system,” Optica , vol. 5, no. 4, p. 367, 2018
2018
Closest in time.
F. Mattioli, Z. Zhou, A. Gaggero, R. Gaudio, S. Jahanmirinejad, D. Sahin, F. Marsili, R. Leoni, and A. Fiore, “Photon-number-resolving superconducting nanowire detectors,” Superconductor Science and Technology , vol. 28, no. 10, p. 104001, 2015. [Online]. Available: http://iopscience.iop.org/article/10.1088/0953-2048/28/10/104001/pdf
2048
Closest in time.