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          Institute: MPI für Gravitationsphysik     Collection: Theoretical Gravitational Wave Physics     Display Documents



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ID: 318002.0, MPI für Gravitationsphysik / Theoretical Gravitational Wave Physics
Demonstration of Displacement- and Frequency-Noise-Free Laser Interferometry Using Bidirectional Mach-Zehnder Interferometers
Authors:Sato, Shuichi; Kokeyama, Keiko; Ward, Robert L.; Kawamura, Seiji; Chen, Yanbei; Pai, Archana; Somiya, Kentaro
Date of Publication (YYYY-MM-DD):2007
Title of Journal:Physical Review Letters
Volume:98
Sequence Number of Article:141101
Review Status:not specified
Audience:Not Specified
Abstract / Description:We have demonstrated displacement- and frequency-noise-free laser interferometry (DFI) by partially implementing a recently proposed optical configuration using bidirectional Mach-Zehnder interferometers (MZIs). This partial implementation, the minimum necessary to be called DFI, has confirmed the essential feature of DFI: the combination of two MZI signals can be carried out in a way that cancels displacement noise of the mirrors while maintaining gravitational-wave signals. The attained maximum displacement-noise suppression was 45 dB.
External Publication Status:published
Document Type:Article
Communicated by:Yanbei Chen
Affiliations:MPI für Gravitationsphysik/Theoretical Gravitational Wave Physics
Identifiers:URL:http://link.aps.org/abstract/PRL/v98/e141101
LOCALID:arXiv:gr-qc/0608095v2
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