Impedance-matched differential SNSPDs for practical photon counting with sub-10 ps timing jitter. Colangelo, M., Beyer, A., Korzh, B., Allmaras, J. P, Mueller, A., Briggs, R. M, Bumble, B., Runyan, M., Stevens, M. J, McCaughan, A., Zhu, D., Smith, S., Becker, W., Narváez, L., Bienfang, J. C, Frasca, S., Velasco, A. E, Ramirez, E., Walter, A., Schmidt, E., Wollman, E. E, Peña, C., Spiropulu, M., Mirin, R. P, Nam, S. W., Berggren, K. K, & Shaw, M. D IEEE, 9 May, 2021.
abstract   bibtex   
We demonstrate large-area superconducting nanowire single-photon detectors (SNSPDs) with simultaneous high system detection efficiency and low system jitter. We describe the device architecture and discuss optimal readout setup for practical applications.
@ARTICLE{Colangelo2021-ah,
  title     = "{Impedance-matched differential SNSPDs for practical photon
               counting with sub-10 ps timing jitter}",
  author    = "Colangelo, Marco and Beyer, Andrew and Korzh, Boris and Allmaras,
               Jason P and Mueller, Andrew and Briggs, Ryan M and Bumble, Bruce
               and Runyan, Marcus and Stevens, Martin J and McCaughan, Adam and
               Zhu, Di and Smith, Steve and Becker, Wolfgang and Narv\'{a}ez,
               Lautaro and Bienfang, Joshua C and Frasca, Simone and Velasco,
               Angel E and Ramirez, Edward and Walter, Alexander and Schmidt,
               Ekkehart and Wollman, Emma E and Pe\~{n}a, Cristi\'{a}n and
               Spiropulu, Maria and Mirin, Richard P and Nam, Sae Woo and
               Berggren, Karl K and Shaw, Matthew D",
  publisher = "IEEE",
  pages     = "1--2",
  abstract  = "We demonstrate large-area superconducting nanowire single-photon
               detectors (SNSPDs) with simultaneous high system detection
               efficiency and low system jitter. We describe the device
               architecture and discuss optimal readout setup for practical
               applications.",
  month     =  "9~" # may,
  year      =  2021,
  keywords  = "GoogleScholar"
}

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