论文标题
温度敏感的自旋波不发射非交流型在铁磁铁/X中诱导的层间偶极耦合(x = paramagnet,超导体)杂交系统
Temperature-sensitive spin-wave nonreciprocity induced by interlayer dipolar coupling in ferromagnet/X (X=paramagnet, superconductor) hybrid systems
论文作者
论文摘要
从理论上讲,自旋波(SW)光谱是在来自Paramagnet(PM)(临界温度高于临界温度的FM)或超导体(SC)上的底物上的薄膜(FM)中研究的。在FM中传播的自旋波分别诱导基础PM和SC中的动态磁化和超导电流,这会影响其磁场的SW传播。由于这种相互作用,SW频谱变成非销售的依赖于SW波矢量Q的符号。我们表明,FM/PM和FM/SC系统对SW光谱的非转换贡献是由ΔΩ(Q)=ω(Q)=ω(Q)-Ω(-Q)= a(t)(τ{\ cdot} q)的τ=(N {\ cdot} q),τ=(N {\ \ times} m)是Toroid Mange Mange Mange Mange Mange Mangemation,M nutiand f sce fm fm fm fm fm fm fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)fm(fm)。界面和A(t)偶极性质的温度依赖性常数,其符号取决于底物类型。由于FM-PM或正常金属-SC跃迁接近临界温度TC的温度t依赖性很强,因此有可能控制频率SW非reciproctiontion,而TC附近的温度变化。我们针对SW频率非记录的偶极机制有望将SW传播的这种特性引入功能设备。
Spin-wave (SW) spectra have theoretically been studied in a thin film of a ferromagnet (FM) on a substrate from a paramagnet (PM) (an FM above the critical temperature) or from superconductor (SC). A spin wave propagating in the FM induces the dynamic magnetization and superconducting current in the underlying PM and SC, respectively, which affect the SW propagation by their magnetic fields. As a result of this interaction, the SW spectrum becomes nonreciprocal to depend on the sign of the SW wave vector q. We show that the nonreciprocal contribution to the SW spectra in FM/PM and FM/SC systems is given by the frequency shift of Δω(q)=ω(q)-ω(-q)=a(T)(τ{\cdot}q) with τ=(n{\times}M) being the toroidal magnetic moment, M the FM magnetization, n the unit vector normal to the FM/PM(SC) interface, and a(T) the temperature-dependent constant of a dipole nature, whose sign depends on the substrate type. As the Δω(T) dependence is strong at temperatures T close to the critical temperature Tc for the FM-PM or normal metal-SC transition, one gets a possibility to control the frequency SW nonreciprocity with temperature variation near Tc. The dipolar mechanism we propose for SW frequency nonreciprocity is promising for introducing this property of SW propagation into functional devices.