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Electrically-Detected ESR in Silicon Nanostructures Inserted in Microcavities (1308.5082v1)

Published 23 Aug 2013 in cond-mat.mes-hall and cond-mat.supr-con

Abstract: We present the first findings of the new electrically-detected electron spin resonance technique (EDESR), which reveal the point defects in the ultra-narrow silicon quantum wells (Si-QW) confined by the superconductor delta-barriers. This technique allows the ESR identification without application of an external cavity, as well as a high frequency source and recorder, and with measuring the only response of the magnetoresistance, with internal GHz Josephson emission within frameworks of the normal-mode coupling (NMC) caused by the microcavities embedded in the Si-QW plane.

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