Generation and Detection of 55 GHz Phonons Using Paraelectric Resonance of KCl:Li |
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A₁ A₂ APPENDIX B₁ bottleneck Cleaving considered CORN CORNELL CORNELL LIBRARY CORNELL LIBRARY UNIVERSITY CORNELL UNIVERSITY LIBRARY coupling cryostat crystal DC electric field detected dielectric constant diffusion doped doped region electric Resonance energy levels equilibrium estimate factor frequency given gives incident microwaves inhomogeneous IR's Irreducible Representations Klystron lattice LIBRARY LIBRARY LIBRARY UNIVERSITY CORNELL lithium concentration lithium sites microwave cavity microwave electric field microwave power Multiplication Table number of lithium observed orientation PARAELECTRIC RESONANCE peak phonon signal phonon bandwidth Phonon Induced Transitions phonon modes phonon relaxation phonon temperature phonon transit Phys population difference produced pump cavity pump pulse length pump pulse power rate equations Ray Lewis resonant phonon saturation parameter solid angle sound velocities spatial diffusion spectral diffusion spectral width symmetry t-to T₁ Tag strain teflon tion total number Tp spatial transverse modes UNIV UNIVERSIT UNIVERSITY CORNELL CORNELL UNIVERSITY UNIVERSITY width WT₁