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1 Physical Properties of the Superconducting Ta Film Absorber of an X-ray Photon Detector L. Li, L. Frunzio, C.M. Wilson, and D.E. Prober
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Document Date: 2002-11-26 18:41:16


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City

New Haven / /

Country

United States / /

/

Facility

Alsuperconducting tunnel / Yale University / /

IndustryTerm

fixed photon energy / incident photon energy / read-out imaging devices / superconductive detector system exhibiting high energy / photon energy / x-ray imaging spectroscopy / energy gap / energy range / intrinsic energy resolution / spectroscopy applications / potential astronomy applications / photon imaging spectrometers / µm long device / energy broadening / lower energy levels / larger energy gap / predicted high energy resolving power / short device / energy resolution / energy width / photon imaging x-ray spectrometers / imaging / spatial imaging / lower energy gap / energy / /

MarketIndex

Ta / /

OperatingSystem

Fermi / /

Organization

Yale University / /

Person

L. Li / K. Segall / /

/

Position

F. S. Porter / et al / /

ProvinceOrState

Wisconsin / Connecticut / /

Technology

X-ray / spectroscopy / ESA / simulation / recombination / same chip / /

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