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Properties of Optical Cavity Modes
HoleBurning and ModePulling Effects in Gas Lasers
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absorption approximation Astrophys atoms bremsstrahlung calculated cavity resonance Chebotayev collisions Compton scattering confocal modes counter Crab nebula cross section decay detector discussed dominant Doppler profile Doppler width electrons energy equations excited expression field Figure function gain coefficient gain curve gain hole gas laser Gaussian given helium-neon laser Hence hole depths hole-burning hysteresis hysteresis effects intensity interaction inversion density Kramers-Kronig relations laser transition limit line center Lisitzin Lorentz width Lorentzian Lorentzian function loss matrix measurements mirror neon normal observed obtained optical oscillation oscillator frequency parameters percent phase shift photon Phys plane polarimeter polarisation power broadening problem radiation radiative radio region resonance frequency rocket running wave saturable absorber scanning scattering Sco X-1 shown in Fig single-mode spectrum spontaneous emission star stimulated emission symmetric synchrotron synchrotron emission threshold tion tuning dip values velocity distribution wavelength x-ray flux x-ray source