The realization of a semiconductor near-unity absorber in the infrared will provide new capabilities to transform applications in sensing, health, imaging, and quantum information science, especially where portability is required. Typically, commercially available portable single-photon detectors in the infrared are made from bulk semiconductors and have efficiencies well below unity. Here, we design a novel semiconductor nanowire metamaterial, and show that by carefully arranging an InGaAs nanowire array and by controlling their shape, we demonstrate near-unity absorption efficiency at room temperature. We experimentally show an average measured efficiency of 93% (simulated average efficiency of 97%) over an unprecedented wavelength range ...
International audienceWe report on high-efficiency superconducting nanowire single-photon detectors ...
Ultra-high system detection efficiency (SDE) s uperconducting nanowire single-photon detectors are d...
Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, P...
Detecting single photons with high efficiency and timing resolution opens up new possibilities for v...
Superconducting nanowire single-photon detectors (SNSPDs) play an important role in emerging optical...
Near infrared photons are a promising choice for quantum information processing; their low transmiss...
Since the beginning of the new millennium, the nano-materials community has witnessed an exponential...
ABSTRACT: Semiconductor nanowires supporting leaky mode resonances have been used to increase light ...
In this paper several designs to maximize the absorption efficiency of superconducting-nanowire sing...
Many photonic and plasmonic structures have been proposed to achieve ultrasubwavelength light confin...
We propose the optical design for the absorptive element of photodetectors to achieve wavelength sel...
An infrared perfect absorber based on a gold nanowire metamaterial cavities array on a gold ground p...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Nanowire superconducting single photon detectors (SSPDs) are superior detectors of choice for many a...
Light trapping in subwavelength semiconductor nanowires (NWs) offers a promising approach to simulta...
International audienceWe report on high-efficiency superconducting nanowire single-photon detectors ...
Ultra-high system detection efficiency (SDE) s uperconducting nanowire single-photon detectors are d...
Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, P...
Detecting single photons with high efficiency and timing resolution opens up new possibilities for v...
Superconducting nanowire single-photon detectors (SNSPDs) play an important role in emerging optical...
Near infrared photons are a promising choice for quantum information processing; their low transmiss...
Since the beginning of the new millennium, the nano-materials community has witnessed an exponential...
ABSTRACT: Semiconductor nanowires supporting leaky mode resonances have been used to increase light ...
In this paper several designs to maximize the absorption efficiency of superconducting-nanowire sing...
Many photonic and plasmonic structures have been proposed to achieve ultrasubwavelength light confin...
We propose the optical design for the absorptive element of photodetectors to achieve wavelength sel...
An infrared perfect absorber based on a gold nanowire metamaterial cavities array on a gold ground p...
We have studied the interaction of light with an array of vertically oriented III-V semiconductor na...
Nanowire superconducting single photon detectors (SSPDs) are superior detectors of choice for many a...
Light trapping in subwavelength semiconductor nanowires (NWs) offers a promising approach to simulta...
International audienceWe report on high-efficiency superconducting nanowire single-photon detectors ...
Ultra-high system detection efficiency (SDE) s uperconducting nanowire single-photon detectors are d...
Funding Information: Funding: This research was funded by the Academy of Finland Flagship Program, P...