Related Experiment Video
Updated: Jan 28, 2026

Analysis of Contact Interfaces for Single GaN Nanowire Devices
Published on: November 15, 2013
Tapered InP nanowire arrays for efficient broadband high-speed single-photon detection
Sandra J Gibson1, Brad van Kasteren1, Burak Tekcan1
1Institute for Quantum Computing and Department of Electrical & Computer Engineering, University of Waterloo, Ontario, Canada.
Abstract:
Superconducting nanowire single-photon detectors with peak efficiencies above 90% and unrivalled timing jitter (<30 ps) have emerged as a potent technology for quantum information and sensing applications. However, their high cost and cryogenic operation limit their widespread applicability. Here, we present an approach using tapered InP nanowire p-n junction arrays for high-efficiency, broadband and high-speed photodetection without the need for cryogenic cooling. The truncated conical nanowire shape enables a broadband, linear photoresponse in the ultraviolet to near-infrared range (~500 nm bandwidth) with external quantum efficiencies exceeding 85%. The devices exhibit a high gain beyond 105, such that a single photon per pulse can be distinguished from the dark noise, while simultaneously showing a fast pulse rise time (<1 ns) and excellent timing jitter (<20 ps). Such detectors open up new possibilities for applications in remote sensing, dose monitoring for cancer treatment, three-dimensional imaging and quantum communication.
Related Concept Videos
Speed of a Transverse Wave
One of the key properties of any wave is the wave speed. Light...
Speed of Sound in Gases
Distribution of Molecular Speeds
Drag Force and Terminal Speed
Deriving the Speed of Sound in a Liquid
The speed of sound in fluids can be derived by considering a mechanical wave...
Propagation Speed of Electromagnetic Waves

