Martin M. Fejer

Affiliations: 
Stanford University, Palo Alto, CA 
Area:
Electronics and Electrical Engineering
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"Martin Fejer"

Children

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Gennady Imeshev grad student 2001 Stanford
Loren A. Eyres grad student 2002 Stanford
Krishnan R. Parameswaran grad student 2002 Stanford
Jonathan R. Kurz grad student 2004 Stanford
Andrew M. Schober grad student 2005 Stanford
Xiuping Xie grad student 2006 Stanford
Ueyn L. Block grad student 2007 Stanford
Mathieu Charbonneau-Lefort grad student 2007 Stanford
David Hum grad student 2007 Stanford
Carsten Langrock grad student 2007 Stanford
Rostislav V. Roussev grad student 2007 Stanford
Paulina S. Kuo grad student 2008 Stanford
Joseph E. Schaar grad student 2009 Stanford
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Publications

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Vajente G, Yang L, Davenport A, et al. (2021) Low Mechanical Loss TiO_{2}:GeO_{2} Coatings for Reduced Thermal Noise in Gravitational Wave Interferometers. Physical Review Letters. 127: 071101
Jiang J, Mishkin AS, Prasai K, et al. (2021) Analysis of two-level systems and mechanical loss in amorphous ZrO-doped TaO by non-cage-breaking and cage-breaking transitions. The Journal of Chemical Physics. 154: 174502
Abbott R, Abbott TD, Abraham S, et al. (2020) GW190521: A Binary Black Hole Merger with a Total Mass of 150  M_{⊙}. Physical Review Letters. 125: 101102
Krüger LM, Mayer AS, Okawachi Y, et al. (2020) Performance scaling of a 10-GHz solid-state laser enabling self-referenced CEO frequency detection without amplification. Optics Express. 28: 12755-12770
Yang L, Randel E, Vajente G, et al. (2020) Modifications of ion beam sputtered tantala thin films by secondary argon and oxygen bombardment. Applied Optics. 59: A150-A154
Fazio M, Yang L, Markosyan A, et al. (2020) Growth and characterization of ScO doped TaO thin films. Applied Optics. 59: A106-A111
Abbott R, Abbott TD, Abraham S, et al. (2020) Properties and Astrophysical Implications of the 150 M ⊙ Binary Black Hole Merger GW190521 The Astrophysical Journal. 900
Abbott R, Abbott TD, Abraham S, et al. (2020) GW190814: Gravitational Waves from the Coalescence of a 23 Solar Mass Black Hole with a 2.6 Solar Mass Compact Object The Astrophysical Journal. 896: 1-20
Monitor FGB, Hamburg R, Fletcher C, et al. (2020) A joint Fermi-GBM and LIGO/Virgo analysis of compact binary mergers from the first and second gravitational-wave observing runs The Astrophysical Journal. 893: 100
Abbott R, Abbott TD, Abraham S, et al. (2020) GW190412: Observation of a Binary-Black-Hole Coalescence with Asymmetric Masses Physical Review D. 102: 4301501-4301529
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