Applied Physics Letters · 1993 · 84 citations · 11 references
High-efficiency X-ray SpectrometersSuperconducting MaterialX-ray SpectroscopyEngineeringMultiple Quasiparticle TunnelingCharge AmplificationTunnel JunctionsSuperconductivityQuantum MaterialsElectronic NoiseSuperconducting DevicesElectrical EngineeringPhysicsSynchrotron RadiationMicroelectronicsX-ray Free-electron LaserX-ray DetectorsX-ray DiffractionApplied PhysicsCondensed Matter Physics
Superconducting tunnel junctions coupled to superconducting absorbers may be used as high-resolution, high-efficiency x-ray spectrometers. We have tested devices with niobium x-ray absorbing layers coupled to aluminum layers that serve as quasiparticle traps. The energy resolution at 6 keV was 49 eV full width at half-maximum. We estimate that each quasiparticle tunnels an average of 19 times before recombining, increasing the total charge transferred and therefore decreasing the effects of electronic noise.
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The properties of niobium superconducting tunneling junctions as X-ray detectors
N. Rando, A. Peacock, A. van Dordrecht et al. · Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment · 1992 · 143 citations
Superconducting Material, High-tc Superconductivity, Engineering +8
K. E. Gray · Applied Physics Letters · 1978 · 134 citations
Superconducting Material, Josephson Junctions, Electrical Engineering +12