Optical production and detection of dark matter candidates

Anno: 2001

Autori: Brandi F., Bregant M., Cantatore G., Valle F.D., Carusotto S., Domenico G.D., Gastaldi U., Milotti E., Pengo R., Polacco E., Rizzo C., Ruoso G., Zavattini E., Zavattini G.

Affiliazione autori: Università di Pisa, Italy; Università di Padova, Italy; Università di Trieste, Italy; Dipartimento di Fisica, Università di Ferrara, via Paradiso 12, I-56100 Ferrara, Italy; INFN, Laboratory Nazionali di Legnaro, Italy; Università di Udine and INFN, Sezione di Udine, Italy; Université de Toulouse, France; INFN, Sezione di Ferrara, Italy

Abstract: The PVLAS collaboration is at present running, at the Laboratori Nazionali di Legnaro of INFN, a very sensitive optical ellipsometer capable of measuring the small rotations or ellipticities which can be acquired by a linearly polarized laser beam propagating in vacuum through a transverse magnetic field (vacuum magnetic birefringence). The apparatus will also be able to set new limits on mass and coupling constant of light scalar/pseudoscalar particles coupling to two photons by both producing and detecting the hypothetical particles. The axion, introduced to explain parity conservation in strong interactions, is an example of this class of particles, all of which are considered possible dark matter candidates. The PVLAS apparatus consists of a very high finesse (>140000), 6.4 m long, Fabry-Pérot cavity immersed in an intense dipolar magnetic field (~6.5 T). A linearly polarized laser beam is frequency locked to the cavity and analysed, using a heterodyne technique, for rotation and/or ellipticity acquired within the magnetic field.

Giornale/Rivista: NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT

Volume: 461 (1-3)      Da Pagina: 329  A: 331

Maggiori informazioni: Conference: 8th Pisa Meeting on Advanced Detectors – Location: LA BIODOLA, ITALY. Date: MAY 21-27, 2000
Parole chiavi: Dark matter; Ellipsometer; Fabry-Perot cavity; Frequency locking;
DOI: 10.1016/S0168-9002(00)01236-5

Citazioni: 8
dati da “WEB OF SCIENCE” (of Thomson Reuters) aggiornati al: 2024-04-28
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