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Negative mass cyclotron resonance maser
Authors:V I Gavrilenko  Z F Krasil'nik
Institution:(1) Institute of Applied Physics, Academy of Sciences of the USSR, Gorky, USSR
Abstract:Physical principles, design and operation characteristics of a negative mass cyclotron resonance maser inp-type germanium are considered in this paper. The formation of anisotropic inverted distributions of negative effective mass heavy holes in strong electric and magnetic fieldsE parH par 001], resulting in negative conductivity in the millimetre and submillimetre wavelength ranges, is discussed. The generation is observed atlambda ap 0.9 to 8mm in low compensated germanium samples with the hole concentration rangeN 0 ap 2×1012 to 2×1014 cm–3 at low temperaturesT les 25 K in electric fieldsE ap 40 to 350Vcm–1. The maser frequency is tuned by the magnetic field corresponding to a cyclotron resonance frequency of carriers with an effective mass ofm c ap 0.4m 0. The spectral width of the emission in single mode operation does not exceed several megahertz. A pulse duration of tau ap 1 to 200 mgrs and a repetition rate off rep ap 1 to 200 Hz has been obtained limited by sample heating. Possibilities of improving the maser characteristics inp-Ge as well as in other AIII Bv semiconductors and the perspectives of new frequency tuning methods due to the application of uniaxial stress and magnetic field are demonstrated.
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