Bruno P
Max-Planck-Institut für Mikrostrukturphysik, Weinberg 2, D-06120 Halle, Germany.
Phys Rev Lett. 2002 Jun 17;88(24):240401. doi: 10.1103/PhysRevLett.88.240401. Epub 2002 May 29.
The zero-point quantum fluctuations of the electromagnetic field in vacuum are known to give rise to a long-range attractive force between metal plates (Casimir effect). For ferromagnetic layers separated by vacuum, it is shown that the interplay of the Casimir effect and of the magneto-optical Kerr effect gives rise to a long-range magnetic interaction. The Casimir magnetic force is found to decay as D-1 in the limit of short distances, and as D-5 in the limit of long distances. Explicit expressions for realistic systems are given in the large- and small-distance limits. An experimental test of the Casimir magnetic interaction is proposed.
真空中电磁场的零点量子涨落会在金属板之间产生长程吸引力(卡西米尔效应)。对于被真空隔开的铁磁层,研究表明卡西米尔效应与磁光克尔效应的相互作用会产生长程磁相互作用。发现在短距离极限下卡西米尔磁力按D - 1衰减,在长距离极限下按D - 5衰减。给出了实际系统在大距离和小距离极限下的显式表达式。提出了对卡西米尔磁相互作用的实验测试。