Integration of photonic integrated circuit functionalities with superconducting nanowire single photon detectors (invited)

Schuck, Carsten

Forschungsartikel in Online-Sammlung (Konferenz) | Peer reviewed

Zusammenfassung

Superconducting Nanowire Single Photon Detectors (SNSPD) have set leading performance benchmarks in terms of detection efficiency, low noise operation, speed, and timing accuracy. Besides scaling up the numbers of individually addressable nanowire detector channels, integration with nanophotonic functionalities as well as optical and electrical multiplexing will be key to advance single photon counting applications, such as quantum key distribution, optical quantum information processing and simulations of sampling problems. Here we show how integration of SNSPDs with nanophotonic circuit components gives rise to novel use cases. We combine highperformance waveguide-integrated SNSPDs with nano-electromechanical phase-shifters, high speed electro-optic modulators, sub-wavelength grating structures, directional coupler networks, on-chip delay lines and highly efficient and broadband 3D-interconnects to optical fibers, achieving crucial active and passive functionalities for integrated quantum photonics. We showcase the capabilities and practical relevance of photonic integrated SNSPD solutions for the example of high-rate quantum key distribution receivers.

Details zur Publikation

Name des RepositoriumsProc. SPIE 12911, Quantum Computing, Communication, and Simulation IV
Artikelnummer1291103
StatusVeröffentlicht
Veröffentlichungsjahr2024 (13.03.2024)
KonferenzSPIE Quantum West 2024, San Francisco, Vereinigte Staaten
DOI10.1117/12.3012124
Link zum Volltexthttps://doi.org/10.1117/12.3012124
StichwörterNanowires; Superconductors; Waveguides; Quantum detection; Quantum nanophotonics; Single photon detectors; Photonic integrated circuits; Directional couplers; Quantum key distribution; Quantum key distribution systems.

Autor*innen der Universität Münster

Schuck, Carsten
Department für Quantentechnologie