Author |
Title |
Year |
Publication |
Volume |
Pages |
Annunziata, Anthony J.; Quaranta, Orlando; Santavicca, Daniel F.; Casaburi, Alessandro; Frunzio, Luigi; Ejrnaes, Mikkel; Rooks, Michael J.; Cristiano, Roberto; Pagano, Sergio; Frydman, Aviad; Prober, Daniel E. |
Reset dynamics and latching in niobium superconducting nanowire single-photon detectors |
2010 |
J. Appl. Phys. |
108 |
7 |
Antipov, A. V.; Seleznev, V. A.; Vakhtomin, Y. B.; Morozov, P. V.; Vasilev, D. D.; Malevannaya, E. I.; Moiseev, K. M.; Smirnov, K. |
Investigation of WSi and NbN superconducting single-photon detectors in mid-IR range |
2020 |
IOP Conf. Ser.: Mater. Sci. Eng. |
781 |
012011 (1 to 5) |
Baek, Burm; Lita, Adriana E.; Verma, Varun; Nam, Sae Woo |
Superconducting a-WxSi1–x nanowire single-photon detector with saturated internal quantum efficiency from visible to 1850 nm |
2011 |
Applied Physics Letters |
98 |
3 |
Baeva, E. M.; Sidorova, M. V.; Korneev, A. A.; Smirnov, K. V.; Divochy, A. V.; Morozov, P. V.; Zolotov, P. I.; Vakhtomin, Y. B.; Semenov, A. V.; Klapwijk, T. M.; Khrapai, V. S.; Goltsman, G. N. |
Thermal properties of NbN single-photon detectors |
2018 |
Phys. Rev. Applied |
10 |
064063 (1 to 8) |
Baeva, E.; Sidorova, M.; Korneev, A.; Goltsman, G. |
Precise measurement of the thermal conductivity of superconductor |
2018 |
Proc. AIP Conf. |
1936 |
020003 (1 to 4) |
Bell, M.; Kaurova, N.; Divochiy, A.; Gol'tsman, G.; Bird, J.; Sergeev, A.; Verevkin, A. |
On the nature of resistive transition in disordered superconducting nanowires |
2007 |
IEEE Trans. Appl. Supercond. |
17 |
267-270 |
Bulaevskii, L. N.; Graf, Matthias J.; Kogan, V. G. |
Vortex-assisted photon counts and their magnetic field dependence in single-photon superconducting detectors |
2012 |
Phys. Rev. B |
85 |
9 |
Casaburi, A.; Ejrnaes, M.; Quaranta, O.; Gaggero, A.; Mattioli, F.; Leoni, R.; Voronov, B.; Gol'tsman, G.; Lisitskiy, M.; Esposito, E.; Nappi, C.; Cristiano, R.; Pagano, S. |
Experimental characterization of NbN nanowire optical detectors with parallel stripline configuration |
2008 |
J. Phys.: Conf. Ser. |
97 |
012265 (1 to 6) |
Chulkova, G.; Milostnaya, I.; Korneev, A.; Minaeva, O.; Rubtsova, I.; Voronov, B.; Okunev, O.; Smirnov, K.; Gol’tsman, G.; Kitaygorsky, J.; Cross, A.; Pearlman, A.; Sobolewski, R.; Slysz, W. |
Superconducting nanostructures for counting of single photons in the infrared range |
2005 |
Proc. 2-nd CAOL |
2 |
100-103 |
Chulkova, G.; Milostnaya, I.; Tarkhov, M.; Korneev, A.; Minaeva, O.; Voronov, B.; Divochiy, A.; Gol'tsman, G.; Kitaygorsky, J.; Pan, D.; Sobolewski, R. |
Superconducting single-photon nanostructured detectors for advanced optical applications |
2006 |
Proc. Symposium on Photonics Technologies for 7th Framework Program |
400 |
|
Dauler, E. A.; Kerman, A. J.; Robinson, B. S.; Yang, J. K. W.; Voronov, B. M.; Gol’tsman, G. N.; Berggren, K. K. |
Achieving high counting rates in superconducting nanowire single-photon detectors |
2006 |
CLEO/QELS |
|
JTuD3 (1 to 2) |
Dauler, E. A.; Robinson, B. S.; Kerman, A. J.; Yang, J. K. W.; Rosfjord, E. K. M.; Anant, V.; Voronov, B.; Gol'tsman, G.; Berggren, K. K. |
Multi-element superconducting nanowire single-photon detector |
2007 |
IEEE Trans. Appl. Supercond. |
17 |
279-284 |
Dauler, Eric; Kerman, Andrew; Robinson, Bryan; Yang, Joel; Voronov, Boris; Goltsman, Gregory; Hamilton, Scott; Berggren, Karl |
Photon-number-resolution with sub-30-ps timing using multi-element superconducting nanowire single photon detectors |
2009 |
J. Modern Opt. |
56 |
364-373 |
de Lara, D. Perez; Ejrnaes, M.; Casaburi, A.; Lisitskiy, M.; Cristiano, R.; Pagano, S.; Gaggero, A.; Leoni, R.; Golt’sman, G.; Voronov, B. |
Feasibility investigation of NbN nanowires as detector in time-of-flight mass spectrometers for macromolecules of interest in biology (proteins) |
2008 |
J. Low Temp. Phys. |
151 |
771-776 |
Driessen, E. F. C.; Braakman, F. R.; Reiger, E. M.; Dorenbos, S. N.; Zwiller, V.; de Dood, M. J. A. |
Impedance model for the polarization-dependent optical absorption of superconducting single-photon detectors |
2009 |
Eur. Phys. J. Appl. Phys. |
47 |
10701 |