Nefedov Igor S, Rubi J Miguel
Peoples' Friendship University of Russia (RUDN University), 6 Miklukho-Maklaya St., Moscow, 117198, Russia.
Departament de Fisica de la Matèria Condensada, Universitat de Barcelona, Marti i Franquès 1, 08028, Barcelona, Spain.
Sci Rep. 2020 Oct 8;10(1):16831. doi: 10.1038/s41598-020-73995-0.
The Casimir force exerted on a gold dipolar nanoparticle by a finite-thickness slab of the natural hyperbolic material namely, the ortorhombic crystalline modification of boron nitride, is investigated. The main contribution to the force originates from the TM-polarized waves, for frequencies at which the parallel and perpendicular components of the dielectric tensor reach minimal values. These frequencies differ from those corresponding to the Lorentzian resonances for the permittivity components. We show that when the slab is made of an isotropic epsilon-near-zero absorbing material the force on the nanoparticle is larger than that induced by a hyperbolic material, for similar values of the characteristic parameters. This fact makes these materials optimal in the use of Casimir's forces for nanotechnology applications.
研究了由天然双曲线材料(即正交晶系氮化硼晶体变体)的有限厚度平板对金偶极纳米粒子施加的卡西米尔力。对于介电张量的平行和垂直分量达到最小值的频率,该力的主要贡献源自横磁(TM)极化波。这些频率不同于对应于介电常数分量的洛伦兹共振的频率。我们表明,当平板由各向同性的近零介电常数吸收材料制成时,对于相似的特征参数值,纳米粒子上的力大于由双曲线材料引起的力。这一事实使得这些材料在纳米技术应用中利用卡西米尔力方面是最佳的。