Nonlinear effects in vacuum have been predicted but never observed yet directly. The PVLAS collaboration has long been working on an apparatus aimed at detecting such effects by measuring vacuum magnetic birefringence. Unfortunately the sensitivity has been affected by unaccounted noise and systematics since the beginning. A new small prototype ellipsometer has been designed and characterized at the Department of Physics of the University of Ferrara, Italy entirely mounted on a single seismically isolated optical bench. With a finesse F = 414,000 and a cavity length L = 0.5 m we have reached the sensitivity of ψ = 2⋅10^−8 1/√Hz given the laser power at the output of the ellipsometer of P = 24 mW. This record result, very close to the predicted limit, demonstrates the feasibility of reaching such sensitivities, and opens the way to designing a dedicated apparatus for a first detection of vacuum magnetic birefringence.

DELLA VALLE, F., DI DOMENICO, G., Gastaldi, U., Milotti, E., Pengo, R., Ruoso, G., et al. (2010). Towards a direct measurement of vacuum magnetic birefringence: PVLAS achievements. OPTICS COMMUNICATIONS, 283(21), 4194-4198 [10.1016/j.optcom.2010.06.065].

Towards a direct measurement of vacuum magnetic birefringence: PVLAS achievements

DELLA VALLE, FEDERICO;
2010-01-01

Abstract

Nonlinear effects in vacuum have been predicted but never observed yet directly. The PVLAS collaboration has long been working on an apparatus aimed at detecting such effects by measuring vacuum magnetic birefringence. Unfortunately the sensitivity has been affected by unaccounted noise and systematics since the beginning. A new small prototype ellipsometer has been designed and characterized at the Department of Physics of the University of Ferrara, Italy entirely mounted on a single seismically isolated optical bench. With a finesse F = 414,000 and a cavity length L = 0.5 m we have reached the sensitivity of ψ = 2⋅10^−8 1/√Hz given the laser power at the output of the ellipsometer of P = 24 mW. This record result, very close to the predicted limit, demonstrates the feasibility of reaching such sensitivities, and opens the way to designing a dedicated apparatus for a first detection of vacuum magnetic birefringence.
2010
DELLA VALLE, F., DI DOMENICO, G., Gastaldi, U., Milotti, E., Pengo, R., Ruoso, G., et al. (2010). Towards a direct measurement of vacuum magnetic birefringence: PVLAS achievements. OPTICS COMMUNICATIONS, 283(21), 4194-4198 [10.1016/j.optcom.2010.06.065].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1035039