Development of Electrooptic Modulator for Advanced Ground-Based Gravitational Wave Telescopes Using Stoichiometric MgO-Doped LiNbO_3 Crystals
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概要
- 論文の詳細を見る
- Japan Society of Applied Physicsの論文
- 2008-01-25
著者
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MIO Norikatsu
Department of Advanced Material Science, the University of Tokyo
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MORIWAKI Shigenori
Department of Advanced Material Science, the University of Tokyo
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Takeno Kohei
National Institute Of Advanced Industrial Science And Technology
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Moriwaki Shigenori
Department Of Advanced Materials Science University Of Tokyo
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Moriwaki Shigenori
Department Of Advanced Material Science The University Of Tokyo
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Mio Norikatsu
Department Of Advanced Material Science The University Of Tokyo
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Ohmae Noriaki
Department of Advanced Materials Science, University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277
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Ohmae Noriaki
Department Of Advanced Materials Science University Of Tokyo
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Moriwaki Shigenori
Department of Advanced Materials Science, University of Tokyo
関連論文
- Experimental Efforts to Detect Gravitatoional Waves : Large Scale Cryogenic Gravitational Wave Telscope(Chapter 1. Relativistic Astrophysics and Gravitational Waves-Recent Developments-, Part I: Invited Talks, The Next Chapter in Einstein's Legacy)
- Frequency Discrimination Method Making Use of Polarization Selectivity of Triangular Optical Cavity
- Wideband Frequency Stabilization of a 100-W Injection-Locked Nd:YAG Laser Using an External Electrooptic Modulator
- Development of Electrooptic Modulator for Advanced Ground-Based Gravitational Wave Telescopes Using Stoichiometric MgO-Doped LiNbO_3 Crystals
- Laser Interferometer Instrumented in a Disk Antenna for Gravitational Radiation
- Frequency Modulation Method for a He-Ne Laser Using the Mechanical Resonance of the Laser Cavity
- Interferometric Gravitational Wave Detector Using the Transmission Light of the Fabry-Perot Cavity
- Mechanical $Q$-factor Measurement of a Quartz Oscillator at Cryogenic Temperature
- Shot-Noise Limited Low-Frequency Intensity Noise of a Nd:YAG Laser
- Dynamic Null Experiment to Test the Law of Gravitation
- Large-Scale Cryogenic Gravitational Wave Telescope (LCGT)
- Mechanical Transfer Function of a Pendulum Suspended with a Finite-Mass Wire
- Large-Scale Cryogenic Gravitational Wave Telescope (LCGT)
- Laser Intensity Stabilization System Using Laser-Diode-Pumped Nd:YAG Rod-Laser Amplifier
- High-Power and Low-Noise Photodetector for Interferometric Gravitational Wave Detectors
- High-Speed Mechanical Actuator for Precision Optical Path Length Control
- Internal Friction Originating from Random Magnetism