Semiconductor Laser Fundamentals by Toshiaki Suhara

Semiconductor Laser Fundamentals by Toshiaki Suhara

By Toshiaki Suhara

Starting from basic theoretical ideas to complicated machine applied sciences, this reference/text comprehensively explores the engineering, features, and function of particular semiconductor lasers—clearly defining key rules in electromagnetics, optoelectronics, and laser implementation for novel purposes in optical communications, garage, processing, size, and sensing.

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Copyright © 2004 Marcel Dekker, Inc. Interaction of Electrons and Photons 23 Although the energy eigenstates jni of the optical wave are convenient for a discussion on the energy transfer between optical and electron systems, they are not appropriate for a discussion of the electromagnetic fields themselves. In fact, calculation of the expectation value for the electric field by using Eq. , measurement of the amplitude results in fluctuations centered at zero. This is because, for an energy eigenstate with a definite photon number, the phase is completely uncertain.

2 Quantization of the optical wave and the concept of a photon. Copyright © 2004 Marcel Dekker, Inc. Interaction of Electrons and Photons 23 Although the energy eigenstates jni of the optical wave are convenient for a discussion on the energy transfer between optical and electron systems, they are not appropriate for a discussion of the electromagnetic fields themselves. In fact, calculation of the expectation value for the electric field by using Eq. , measurement of the amplitude results in fluctuations centered at zero.

Lamb, Jr, Laser Physics, AddisonWesley, Reading, MA (1974). D. Marcuse, Principles of Quantum Electronics, Academic Press, New York (1980). K. Shimoda, Introduction to Laser Physics (in Japanese), Iwanami, Tokyo (1983). P. Meystre and M. Sargent III, Elements of Quantum Optics, Springer, Berlin (1991). T. Suhara, Quantum Electronics (in Japanese), Ohmsha, Tokyo (1993). Copyright © 2004 Marcel Dekker, Inc. 3 Stimulated Emission and Optical Gain in Semiconductors This chapter presents the basic theory and characteristics of stimulated emission and optical amplification gain in semiconductors.

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