We describe the principle and the status of the PVLAS experiment which is presently running at the INFN section of Ferrara, Italy, to detect the magnetic birefringence of vacuum. This is related to the QED vacuum structure and can be detected by measuring the ellipticity acquired by a linearly polarized light beam propagating through a strong magnetic field. Such an effect is predicted by the Euler–Heisenberg Lagrangian. The method is also sensitive to other hypothetical physical effects such as axion-like particles and in general to any fermion/boson millicharged particle. Here we report on the construction of our apparatus based on a high finesse (> 2 · 10^5) Fabry–Perot cavity and two 0.9 m long 2.5 T permanent dipole rotating magnets, and on the measurements performed on a scaled down test setup. With the test setup we have improved by about a factor 2 the limit on the parameter A_e describing nonlinear electrodynamic effects in vacuum: A_e < 2.9 · 10^−21 T^−2 @ 95% C.L.

Zavattini, G., Gastaldi, U., Pengo, R., Ruoso, G., DELLA VALLE, F., Milotti, E. (2012). Measuring the magnetic birefringence of vacuum: the PVLAS experiment. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 27(15) [10.1142/S0217751X12600172].

Measuring the magnetic birefringence of vacuum: the PVLAS experiment

DELLA VALLE, FEDERICO;
2012-01-01

Abstract

We describe the principle and the status of the PVLAS experiment which is presently running at the INFN section of Ferrara, Italy, to detect the magnetic birefringence of vacuum. This is related to the QED vacuum structure and can be detected by measuring the ellipticity acquired by a linearly polarized light beam propagating through a strong magnetic field. Such an effect is predicted by the Euler–Heisenberg Lagrangian. The method is also sensitive to other hypothetical physical effects such as axion-like particles and in general to any fermion/boson millicharged particle. Here we report on the construction of our apparatus based on a high finesse (> 2 · 10^5) Fabry–Perot cavity and two 0.9 m long 2.5 T permanent dipole rotating magnets, and on the measurements performed on a scaled down test setup. With the test setup we have improved by about a factor 2 the limit on the parameter A_e describing nonlinear electrodynamic effects in vacuum: A_e < 2.9 · 10^−21 T^−2 @ 95% C.L.
2012
Zavattini, G., Gastaldi, U., Pengo, R., Ruoso, G., DELLA VALLE, F., Milotti, E. (2012). Measuring the magnetic birefringence of vacuum: the PVLAS experiment. INTERNATIONAL JOURNAL OF MODERN PHYSICS A, 27(15) [10.1142/S0217751X12600172].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/1035061