Details
Originalsprache | Englisch |
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Seiten | 61 |
Seitenumfang | 1 |
Publikationsstatus | Veröffentlicht - 1996 |
Veranstaltung | 1996 European Quantum Electronics Conference (EQEC'96) - Hamburg, Ger Dauer: 8 Sept. 1996 → 13 Sept. 1996 |
Konferenz
Konferenz | 1996 European Quantum Electronics Conference (EQEC'96) |
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Kurztitel | EQEC'96 |
Ort | Hamburg, Ger |
Zeitraum | 8 Sept. 1996 → 13 Sept. 1996 |
Abstract
The sensitivity of interferometric gravitational wave detectors (GWD) can be enhanced by signal recycling. The technique uses the properties of an optical cavity to enhance sidebands impressed on the carrier frequency (laser) due to the interaction of the laser field with the gravitational wave. The technique was used to realize a high-Q cavity with nevertheless broadband response (white-light cavity) to improve the bandwidth of future GWDs while maintaining the gain in sensitivity.
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1996. 61 Beitrag in 1996 European Quantum Electronics Conference (EQEC'96), Hamburg, Ger.
Publikation: Konferenzbeitrag › Paper › Forschung › Peer-Review
}
TY - CONF
T1 - On the Realization of Negative (Anomalous) Dispersion without Absorption
AU - Wicht, A.
AU - Brozek, S.
AU - Klausing, H.
AU - Mueller, G.
AU - Quetschke, V.
AU - Rinkleff, R. H.
AU - Danzmann, K.
PY - 1996
Y1 - 1996
N2 - The sensitivity of interferometric gravitational wave detectors (GWD) can be enhanced by signal recycling. The technique uses the properties of an optical cavity to enhance sidebands impressed on the carrier frequency (laser) due to the interaction of the laser field with the gravitational wave. The technique was used to realize a high-Q cavity with nevertheless broadband response (white-light cavity) to improve the bandwidth of future GWDs while maintaining the gain in sensitivity.
AB - The sensitivity of interferometric gravitational wave detectors (GWD) can be enhanced by signal recycling. The technique uses the properties of an optical cavity to enhance sidebands impressed on the carrier frequency (laser) due to the interaction of the laser field with the gravitational wave. The technique was used to realize a high-Q cavity with nevertheless broadband response (white-light cavity) to improve the bandwidth of future GWDs while maintaining the gain in sensitivity.
UR - http://www.scopus.com/inward/record.url?scp=0029765957&partnerID=8YFLogxK
U2 - 10.1109/eqec.1996.561610
DO - 10.1109/eqec.1996.561610
M3 - Paper
AN - SCOPUS:0029765957
SP - 61
T2 - 1996 European Quantum Electronics Conference (EQEC'96)
Y2 - 8 September 1996 through 13 September 1996
ER -