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Proximity Array Device: A Novel Photon Detector Working in Long Wavelengths

Academic Article
Publication Date:
2020
abstract:
We present here an innovative photon detector based on the proximity junction array device (PAD) working at long wavelengths. We show that the vortex dynamics in PAD undergoes a transition from a Mott insulator to a vortex metal state by application of an external magnetic field. The PAD also evidences a Josephson I-V characteristic with the external field dependent tunneling current. At high applied currents, we observe a dissipative regime in which the vortex dynamics is dominated by the quasi-particle contribution from the normal metal. The PAD has a relatively high photo-response even at frequencies below the expected characteristic frequency while, its superconducting properties such as the order parameter and the Josephson characteristic frequency can be modulated via external fields to widen the detection band. This device represents a promising and reliable candidate for new high-sensitivity long-wavelength detectors.
Iris type:
01.01 Articolo in rivista
Keywords:
niobium; proximity effects; superconductivity; detectors; terahertz; Vortex dynamics
List of contributors:
Cibella, Sara
Authors of the University:
CIBELLA SARA
Handle:
https://iris.cnr.it/handle/20.500.14243/385550
Published in:
CONDENSED MATTER
Journal
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