PACS numbers

85.60.Gz Photodetectors
  1. V.V. Levin, A.V. Krivchenko et alDetectors and integrated circuits of orbiting telescopesPhys. Usp. 67 379–389 (2024)
    9.40.-n, 85.60.Gz, 95.55.−n (all)
  2. I.G. Neizvestnyi, A.E. Klimov, V.N. Shumsky “Photon far-infrared and sub-millimeters array detectorsPhys. Usp. 58 952–962 (2015)
    42.79.Pw, 85.60.Gz (all)
  3. I.E. Protsenko, A.V. Uskov “Photoemission from metal nanoparticlesPhys. Usp. 55 508–518 (2012)
    42.79.Pw, 79.60.Jv, 85.60.Gz, 88.40.hj (all)
  4. W.S. Boyle “CCD — An extension of man’s viewPhys. Usp. 53 (12) (2010)
    01.30.Bb, 85.30.−z, 85.60.Gz (all)
  5. G.E. Smith “The invention and early history of the CCDPhys. Usp. 53 (12) (2010)
    01.30.Bb, 85.30.−z, 85.60.Gz (all)
  6. V.P. Bykov “Photocounts and laser detection of weak optical signalsPhys. Usp. 48 469–486 (2005)
    42.50.−p, 84.47.+w, 85.60.Gz (all)
  7. V.P. Ponomarenko “Cadmium mercury telluride and the new generation of photoelectronic devicesPhys. Usp. 46 629–644 (2003)
    01.65.+g, 07.57.Kp, 85.60.Gz (all)
  8. B.A. Volkov, L.I. Ryabova, D.R. Khokhlov “Mixed-valence impurities in lead telluride-based solid solutionsPhys. Usp. 45 819–846 (2002)
    71.23.An, 71.55.−i, 85.60.Gz (all)
  9. V.P. Bykov, A.V. Gerasimov, V.O. Turin “Coulomb disintegration of weak electron fluxes and the photocountsPhys. Usp. 38 911–921 (1995)
    79.60.Bm, 42.50.Ct, 07.60.Dq, 85.60.Gz (all)
  10. D.N. Klyshko, A.N. Penin “The prospects of quantum photometrySov. Phys. Usp. 30 716–723 (1987)
    07.60.Dq, 06.20.fb, 85.60.Gz, 85.60.Ha (all)
  11. D.N. Klyshko, A.N. Penin “Quantum photometry using parametric scattering of lightSov. Phys. Usp. 28 92–93 (1985)
    07.60.Dq, 77.84.−s, 77.22.Ch, 78.35.+c, 85.60.Gz (all)
  12. B.S. Rinkevicius “The Doppler method of measuring local velocities using lasersSov. Phys. Usp. 16 712–725 (1974)
    47.80.Cb, 47.15.−x, 41.20.Jb, 47.85.Dh, 85.60.Gz, 47.27.−i (all)
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