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Frequency-Dependent Squeeze Amplitude Attenuation and Squeeze Angle Rotation by Electromagnetically Induced Transparency for Gravitational Wave Interferometers

General Relativity and Quantum Cosmology 2007-05-23 v3 Quantum Physics

Abstract

We study the effects of frequency-dependent squeeze amplitude attenuation and squeeze angle rotation by electromagnetically induced transparency (EIT) on gravitational wave (GW) interferometers. We propose the use of low-pass, band-pass, and high-pass EIT filters, an S-shaped EIT filter, and an intra-cavity EIT filter to generate frequency-dependent squeezing for injection into the antisymmetric port of GW interferometers. We find that the EIT filters have several advantages over the previous filter designs with regard to optical losses, compactness, and the tunability of the filter linewidth.

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Cite

@article{arxiv.gr-qc/0508102,
  title  = {Frequency-Dependent Squeeze Amplitude Attenuation and Squeeze Angle Rotation by Electromagnetically Induced Transparency for Gravitational Wave Interferometers},
  author = {Eugeniy E. Mikhailov and Keisuke Goda and Thomas Corbitt and Nergis Mavalvala},
  journal= {arXiv preprint arXiv:gr-qc/0508102},
  year   = {2007}
}

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4 pages