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Springer Theses Laser Power Stabilization Via Radiation Pressure, (Hardcover)

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Management number 240665520 Release Date 2026/07/16 List Price US$52.08 Model Number 240665520
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This book offers a comprehensive and complete description of a new scheme to stabilize the power of a laser on a level needed for high precision metrology experiments. The novel aspect of the scheme is sensing power fluctuations via the radiation pressure driven motion they induce on a micro-oscillator mirror. It is shown that the proposed technique can result in higher signals for power fluctuations than what is achieved by a direct power detection, and also that it enables the generation of a strong bright squeezed beam. The book starts with the basics of power stabilization and an overview on the current state of art. Then, detailed theoretical calculations are performed, and the advantages of the new scheme are highlighted. Finally, a proof-of-principle experiment is described and its results are analyzed in details. The success of the work presented here paves a way for achieving high power stability in future experiments and is of interest for high precisionmetrology experiments, like gravitational wave detectors, and optomechanical experiments.<br>Nominated as an outstanding PhD thesis by the Gravitational Wave International Committee.

  • Springer Theses Laser Power Stabilization Via Radiation Pressure, (Hardcover)
  • Author: Marina Trad Nery
  • ISBN: 9783030958671
  • Format: Hardcover
  • Publication Date: 2022-04-26
  • Page Count: 154
Manual & guide type Instruction Manual
Book format Hardcover
Edition 2022 Edition
Pages 154
Language English
Brand Marina Trad Nery
Pub date 20220101
Author Marina Trad Nery
Subgenre Physics
Genre Textbooks
Bisac subject heading Science
Series title Springer Theses
Number in series 0
Dimensions 6.14 x 0.44 x 9.21 in
Educational level Higher
Age group Adult
Piece count 0
Retail packaging Single Piece
Original languages English
Awards won Nominated as an outstanding PhD thesis by the Gravitational Wave International Committee

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