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Energy in a mode as a function of time Energy was initially in mode 1
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acceptor anisotropy approximation assume assumptions atomic Bell's inequality biexciton Born rigid calculations coefficients components considered constant Copenhagen interpretation core correlation corresponding Coulomb crystal curve defined density dielectric dielectric function discussed distribution effect eigenvalue electron electron-hole equation exciton experimental factor Fermi Fermi surface formalism frequency given Green's function Hamiltonian Hilbert space hole infra-red integral intensity interaction Journ laser Lett limit linear liquid magnetic field matrix elements measurements metals metric mode muon Nuovo Cimento observed obtained operators optical parameters particles permanent interpretation phase phonon Phys physical system plasma plasmon polariton polarization positron potential problem properties quantum quantum mechanics quasi-particle radiation region respect RIASSUNTO ricevuto scattering screened Sect self-consistent self-energy semiconductors solution space spectra spectrum surface symmetry tachyon TCNQ temperature tensor theoretical theory tion transformation transition valence valence band vector velocity wave functions wavelength zero