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Laser Physics
A01=Murray
Author_Murray
Average Photon Number
Category=PH
Complex Polarization
Cos
Decay Constant
Density Matrix
Density Operator
Energy Conservation
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Iii Sargent
Lamb Dip
Langevin Equation
Laser Linewidth
Mode Locking
Nuclear Magnetic Resonance
Photon Echo
Photon Number States
Probability Amplitudes
Ring Laser
Rotating Wave Approximation
Running Waves
Schrodinger Equation
Schrodinger Picture
Simple Harmonic Oscillator
Spontaneous Emission
Standing Wave Laser
State Vector
Wave Function
Product details
- ISBN 9780367091095
- Weight: 1020g
- Dimensions: 152 x 229mm
- Publication Date: 13 Jun 2019
- Publisher: Taylor & Francis Ltd
- Publication City/Country: GB
- Product Form: Hardback
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This book treats the interaction of radiation with matter, particular attention being paid to the laser. Knowledge is assumed of the usual half-year introduction of quantum mechanics found in undergraduate physics curricula. The material can be covered in two semesters, or, alternatively, the first part (Chaps 1-13) can be used as a one-semester course in which quantum mechanical aspects of the electromagnetic field are ignored. Each chapter is accompanied by problems that illustrate the text and give useful (occasionally new) results. Existing laser media are intrinsically quantum mechanical and are most easily studied with the quantum theory. Understanding the laser along these lines enlivens one's understanding of quantum mechanics itself. In fact, the material constitutes a viable, applied alternative for the usual second and third semesters of quantum mechanics.
Murray Sargent III
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