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zadetkov: 75
1.
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2.
  • The Einstein Telescope: a t... The Einstein Telescope: a third-generation gravitational wave observatory
    Punturo, M; Abernathy, M; Acernese, F ... Classical and quantum gravity, 10/2010, Letnik: 27, Številka: 19
    Journal Article
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    Advanced gravitational wave interferometers, currently under realization, will soon permit the detection of gravitational waves from astronomical sources. To open the era of precision gravitational ...
Celotno besedilo
Dostopno za: NUK, UL

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3.
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Dostopno za: NUK, UL

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4.
  • Low temperature mechanical ... Low temperature mechanical dissipation of an ion-beam sputtered silica film
    Martin, I W; Nawrodt, R; Craig, K ... Classical and quantum gravity, 02/2014, Letnik: 31, Številka: 3
    Journal Article
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    Thermal noise arising from mechanical dissipation in oxide mirror coatings is an important limit to the sensitivity of future gravitational wave detectors, optical atomic clocks and other precision ...
Celotno besedilo
Dostopno za: NUK, UL

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5.
  • Thermal charge carrier driv... Thermal charge carrier driven noise in transmissive semiconductor optics
    Bruns, F.; Vyatchanin, S. P.; Dickmann, J. ... Physical review. D, 07/2020, Letnik: 102, Številka: 2
    Journal Article
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    Several sources of noise limit the sensitivity of current gravitational wave detectors. Currently, dominant noise sources include quantum noise and thermal Brownian noise, but future detectors will ...
Celotno besedilo
Dostopno za: CMK, CTK, FMFMET, IJS, NUK, PNG, UM

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6.
  • The third generation of gra... The third generation of gravitational wave observatories and their science reach
    Punturo, M; Abernathy, M; Acernese, F ... Classical and quantum gravity, 04/2010, Letnik: 27, Številka: 8
    Journal Article
    Recenzirano
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    Large gravitational wave interferometric detectors, like Virgo and LIGO, demonstrated the capability to reach their design sensitivity, but to transform these machines into an effective observational ...
Celotno besedilo
Dostopno za: NUK, UL

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7.
  • Evaluation of heat extracti... Evaluation of heat extraction through sapphire fibers for the GW observatory KAGRA
    Khalaidovski, A; Hofmann, G; Chen, D ... Classical and quantum gravity, 05/2014, Letnik: 31, Številka: 10
    Journal Article
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    Currently, the Japanese gravitational wave laser interferometer KAGRA is under construction in the Kamioka mine. As one main feature, it will employ sapphire mirrors operated at a temperature of 20 K ...
Celotno besedilo
Dostopno za: NUK, UL

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8.
  • Mechanical loss of a hydrox... Mechanical loss of a hydroxide catalysis bond between sapphire substrates and its effect on the sensitivity of future gravitational wave detectors
    Haughian, K.; Chen, D.; Cunningham, L. ... Physical review. D, 10/2016, Letnik: 94, Številka: 8
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    Hydroxide catalysis bonds are low mechanical loss joints which are used in the fused silica mirror suspensions of current room temperature interferometric gravitational wave detectors, one of the ...
Celotno besedilo
Dostopno za: CMK, CTK, FMFMET, IJS, NUK, PNG, UM

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9.
  • Brownian thermal noise in f... Brownian thermal noise in functional optical surfaces
    Kroker, S.; Dickmann, J.; Rojas Hurtado, C. B. ... Physical review. D, 07/2017, Letnik: 96, Številka: 2
    Journal Article
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    We present a formalism to compute Brownian thermal noise in functional optical surfaces such as grating reflectors, photonic crystal slabs, or complex metamaterials. Such computations are based on a ...
Celotno besedilo
Dostopno za: CMK, CTK, FMFMET, IJS, NUK, PNG, UM

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10.
  • Silicon mirror suspensions ... Silicon mirror suspensions for gravitational wave detectors
    Cumming, A V; Cunningham, L; Hammond, G D ... Classical and quantum gravity, 01/2014, Letnik: 31, Številka: 2
    Journal Article
    Recenzirano
    Odprti dostop

    One of the most significant limits to the sensitivity of current, and future, long-baseline interferometric gravitational wave detectors is thermal displacement noise of the test masses and their ...
Celotno besedilo
Dostopno za: NUK, UL

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zadetkov: 75

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