Superconducting wide strip photon detector with high critical current bank structure
arXiv:2305.06583 · doi:10.1364/OPTICAQ.497675
Abstract
Superconducting strip single-photon detectors offer excellent photon detection performance and are indispensable tools for cutting-edge optical science and technologies, including photonic quantum computation and quantum networks. Ultra-wide superconducting strips with widths of tens of micrometers are desirable to achieve high polarization-independent detection efficiency using a simple straight strip. However, biasing the ultra-wide strip with sufficient superconducting current to make it sensitive to infrared photons is challenging. The main difficulty is maldistribution of the superconducting current in the strip, which generates excessive intrinsic dark counts. Here, we present a novel superconducting wide strip photon detector (SWSPD) with a high critical current bank (HCCB) structure. This HCCB structure enables suppression of the intrinsic dark counts and sufficient superconducting current biasing of the wide strip. We have experimentally demonstrated a polarization-independent system detection efficiency of ~78% for 1550 nm wavelength photons and a system dark count rate of ~80 cps using a 20-m-wide SWSPD with the HCCB structure. Additionally, fast jitter of 29.8 ps was achieved. The photolithographically manufacturable ultra-wide SWSPD with high efficiency, low dark count, and fast temporal resolution paves the way toward the development of large-scale optical quantum technologies, which will require enormous numbers of ultimate-performance single-photon detectors.
23 pages, 10 figures
References in corpus (17)
- Quantum computational advantage using photons
- Integrated Photonic Quantum Technologies
- Twin-Field Quantum Key Distribution over 511 km Optical Fiber Linking two Distant Metropolitans
- Detecting Infrared Single Photons with Near-Unity System Detection Efficiency
- New Constraints on Dark Photon Dark Matter with Superconducting Nanowire Detectors in an Optical Haloscope
- Continuous entanglement distribution over a transnational 248 km fibre link
- Demonstration of a Thermally-Coupled Row-Column SNSPD Imaging Array
- Superconducting microstrip single-photon detector with system detection efficiency over 90% at 1550 nm
- Quantum detector tomography of superconducting nanostrip photon-number-resolving detector
- Different single photon response of wide and narrow superconducting MoSi strips
- Improved heralded single-photon source with a photon-number-resolving superconducting nanowire detector
- High-efficiency and fast photon-number resolving parallel superconducting nanowire single-photon detector
- Fractal superconducting nanowires detect infrared single photons with 84% system detection efficiency, 1.02 polarization sensitivity, and 20.8 ps timing resolution
- Quantum detector tomography of a 2x2 multi-pixel array of superconducting nanowire single photon detectors
- Broadband polarization insensitivity and high detection efficiency in high-fill-factor superconducting microwire single-photon detectors
- Design of polarization-insensitive superconducting single photon detectors with high-index dielectrics
- Laser-lithographically written micron-wide superconducting nanowire single-photon detectors