Quantum EncrYption and Science Satellite (QEYSSat) | Institute for Quantum Computing

Quantum EncrYption and Science Satellite (QEYSSat) | Institute for Quantum Computing

  • I. DSouza, J-P. Bourgoin, B. L. Higgins, J. G. Lim, R. Tannous, S. Agne, B. Moffat, V. Makarov and T. Jennewein, “Repeated radiation damage and thermal annealing of avalanche photodiodes,” EPJ Quantum Technology 8, 13 (2021). arXiv.

  • C. J. Pugh, J-F. Lavigne, J-P. Bourgoin, B. L. Higgins and T. Jennewein, “Adaptive optics benefit for quantum key distribution uplink from ground to a satellite,” Advanced Optical Technologies 9, 263 (2020). arXiv.

  • B. L. Higgins, J-P. Bourgoin and T. Jennewein, “Numeric estimation of resource requirements for a practical polarization-frame alignment scheme for quantum key distribution (QKD),” Advanced Optical Technologies 9, 253 (2020). arXiv.

  • A. Scott, T. Jennewein, J. Cain, I. D’Souza, B. L. Higgins, D. Hudson, H. Podmore and W. Soh, “The QEYSSAT mission: on-orbit demonstration of secure optical communications network technologies,” Proc. SPIE 11532, Environmental Effects on Light Propagation and Adaptive Systems III115320H (2020).

  • J. Jin, J-P. Bourgoin, R. Tannous, S. Agne, C. J. Pugh, K. B. Kuntz, B. L. Higgins and T. Jennewein. “Genuine time-bin-encoded quantum key distribution over a turbulent depolarizing free-space channel,” Optics Express 27, 37214 (2019). arXiv.

  • P. Chaiwongkhot, K. B. Kuntz, Y. Zhang, A. Huang, J-P. Bourgoin, S. Sajeed, N. Lütkenhaus, T. Jennewein and V. Makarov, “Eavesdropper’s ability to attack a free-space quantum-key-distribution receiver in atmospheric turbulence,” Physical Review A 99, 062315 (2019). arXiv.

  • R. Tannous, Z. Ye, J. Jin, K. B. Kuntz, N. Lütkenhaus and T. Jennewein, “Demonstration of a 6 state-4 state reference frame independent channel for quantum key distribution,” Applied Physics Letters 115, 211103 (2019). arXiv.

  • P. V. Pereira Pinheiro, P. Chaiwongkhot, S. Sajeed, R. T. Horn, J-P. Bourgoin, T. Jennewein, N. Lütkenhaus and V. Makarov, “Eavesdropping and countermeasures for backflash side channel in quantum cryptography,” Optics Express 26, 21020 (2018). arXiv.

  • J. G. Lim, E. Anisimova, B. L. Higgins, J-P. Bourgoin, T. Jennewein and V. Makarov, “Laser annealing heals radiation damage in avalanche photodiodes,” EPJ Quantum Technology 4, 11 (2017). arXiv.

  • E.Anisimova, B. L. Higgins, J-P. Bourgoin, M. Cranmer, E. Choi, D. Hudson, L. P. Piche, A. Scott, V. Makarov and T. Jennewein, “Mitigating radiation damage of single photon detectors for space applications,” EPJ Quantum Technology 4, 10 (2017). arXiv.

  • C. J. Pugh, S. Kaiser, J-P. Bourgoin, J. Jin, N. Sultana, S. Agne, E. Anisimova, V. Makarov, E. Choi, B. L. Higgins and T. Jennewein, “Airborne demonstration of a quantum key distribution receiver payload,” Quantum Science and Technology 2, 024009 (2017). arXiv.

  • J-P. Bourgoin, B. L. Higgins, N. Gigov, C. Holloway, C. J. Pugh, S. Kaiser, M. Cranmer and T. Jennewein, “Free-space quantum key distribution to a moving receiver,” Optics Express 23, 33437 (2015). arXiv.

  • J-P. Bourgoin, N. Gigov, B. L. Higgins, Z. Yan, E. Meyer-Scott, A. K. Khandani, N. Lütkenhaus and T. Jennewein, “Experimental quantum key distribution with simulated ground-to-satellite photon losses and processing limitations,” Physical Review A 92, 052339 (2015). arXiv.

  • S. Sajeed, P. Chaiwongkhot, J-P. Bourgoin, T. Jennewein, N. Lütkenhaus and V. Makarov, “Security loophole in free-space quantum key distribution due to spatial-mode detector-efficiency mismatch,” Physical Review A 91, 062301 (2015). arXiv.

  • T. Jennewein, J-P. Bourgoin, B. Higgins, C. Holloway, E. Meyer-Scott, C. Erven, B. Heim, Z. Yan, H. Hübel, G. Weihs, E. Choi, I. D’Souza, D. Hudson and R. Laflamme, “QEYSSAT: a mission proposal for a quantum receiver in space”, Proc. SPIE 8997, Advances in Photonics of Quantum Computing, Memory, and Communication VII89970A (2014).

  • C. Holloway, J. A. Doucette, C. Erven, J-P. Bourgoin and T. Jennewein, “Optimal pair-generation rate for entanglement-based quantum key distribution,” Physical Review A 87, 022342 (2013). arXiv.

  • J-P. Bourgoin, E. Meyer-Scott, B. L. Higgins, B. Helou, C. Erven, H. Hübel, B. Kumar, D. Hudson, I. D’Souza, R. Girard, R. Laflamme and T. Jennewein, “A comprehensive design and performance analysis of low Earth orbit satellite quantum communication,” New Journal of Physics 15, 023006 (2013). arXiv.

  • Z. Yan, E. Meyer-Scott, J-P. Bourgoin, B. L. Higgins, N. Gigov, A. MacDonald, H. Hübel and T. Jennewein, “Novel High-Speed Polarization Source for Decoy-State BB84 Quantum Key Distribution Over Free Space and Satellite Links,” Journal of Lightwave Technology 31, 1399 (2013). arXiv.

  • D. Rideout, T. Jennewein, G. Amelino-Camelia, T. F. Demarie, B. L. Higgins, A. Kempf, A. Kent, R. Laflamme, X. Ma, R. B. Mann, E. Martín-Martínez, N. C. Menicucci, J. Moffat, C. Simon, R. Sorkin, L. Smolin and D. R. Terno, “Fundamental quantum optics experiments conceivable with satellites – reaching relativistic distances and velocities,” Classical and Quantum Gravity 29, 224011 (2012). arXiv.

  • E. Meyer-Scott, Z. Yan, A. MacDonald, J-P. Bourgoin, H. Hübel and T. Jennewein, “How to implement decoy-state quantum key distribution for a satellite uplink with 50-dB channel loss,” Physical Review A 84, 062326 (2011). arXiv.   

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