DocumentCode
1107710
Title
Internal and external field fluctuations of a laser oscillator: Part I--Quantum mechanical Langevin treatment
Author
Yamamoto, Yoshihisa ; Imoto, Nobuyuki
Author_Institution
NTT Musashino Electrical Communication Lab., Tokyo, Japan
Volume
22
Issue
10
fYear
1986
fDate
10/1/1986 12:00:00 AM
Firstpage
2032
Lastpage
2042
Abstract
The amplitude and phase noise spectra of the internal and external fields of a laser oscillator are calculated using the quantum mechanical Langevin equations. The outgoing field spectra are demonstrated to be different from the internal field spectra. The outgoing photon flux
from a laser oscillator operating at far above the threshold has a spectral density equal to the classical shot noise level,
. On the other hand, the internal photon number spectrum is Lorentzian, and the variance is equal to the average photon number,
. The difference stems from the quantum mechanical interference between the transmitted internal field and the reflected zero-point fluctuation at the output coupling mirror. The relation between the present analysis and the previous noise theory of a laser is also discussed.
from a laser oscillator operating at far above the threshold has a spectral density equal to the classical shot noise level,
. On the other hand, the internal photon number spectrum is Lorentzian, and the variance is equal to the average photon number,
. The difference stems from the quantum mechanical interference between the transmitted internal field and the reflected zero-point fluctuation at the output coupling mirror. The relation between the present analysis and the previous noise theory of a laser is also discussed.Keywords
Laser noise; Oscillator noise; Phase noise; Equations; Fluctuations; Interference; Laser noise; Laser theory; Mirrors; Noise level; Oscillators; Phase noise; Quantum mechanics;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1986.1072889
Filename
1072889
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