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This book discusses the spectral properties of solid-state laser
materials, including emission and absorption of light, the law of
radiative and nonradiative transitions, the selection rule for
optical transitions, and different calculation methods of the
spectral parameters. The book includes a systematic presentation of
the authors' own research works in this field, specifically
addressing the stimulated nonradiative transition theory and the
apparent crystal field model. This volume is helpful resource for
researchers and graduate students in the fields of solid
spectroscopy and solid-state laser material physics, while also
serving as a valuable reference guide for instructors and advanced
students of physics.
This book discusses the spectral properties of solid-state laser
materials, including emission and absorption of light, the law of
radiative and nonradiative transitions, the selection rule for
optical transitions, and different calculation methods of the
spectral parameters. The book includes a systematic presentation of
the authors' own research works in this field, specifically
addressing the stimulated nonradiative transition theory and the
apparent crystal field model. This volume is helpful resource for
researchers and graduate students in the fields of solid
spectroscopy and solid-state laser material physics, while also
serving as a valuable reference guide for instructors and advanced
students of physics.
Solid-state laser and luminescent materials activated by rare-earth
or transition metals ions are widely used for solid-state lasers,
luminescent lamps, flat displays, optical fibre communication
systems, and other photonic devices. The unique solid-state
electronic properties enable the activators in solids to emit
photons efficiently in visible and IR regions. The rapid advances
in both materials science and optoelectronics, particularly, the
development of new methods of material synthesis and device
fabrication, have been stimulating the growing interests in the
deep insights of spectroscopic properties of solid-state laser and
luminescent materials. This book brings together essential and
practical knowledge of spectroscopic physics. This includes, atomic
spectroscopy, mathematical theory, rare earth ions in materials,
light emission and absorption, spectral properties, non-radiative
transitions and energy migration.
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