论文标题

带有带杂交的相对论费米的自旋轨道磁反应

Spin-orbital magnetic response of relativistic fermions with band hybridization

论文作者

Araki, Yasufumi, Suenaga, Daiki, Suzuki, Kei, Yasui, Shigehiro

论文摘要

相对论费米子的旋转与它们的轨道自由度有关。为了量化相对论和非依次主义自由度之间杂交对自旋轨道耦合的影响,我们专注于由自旋轨道耦合产生的自旋 - 轨道(SO)交叉敏感性。 SO交叉的敏感性定义为它们自旋极化对“轨道”磁场的响应函数,即磁场对颗粒轨道运动作为向量电位的影响。一旦杂交相对论和非同性主义的费米子,它们的交叉易感性就会在带杂交点周围的费米能量上进行修饰,从而导致非层次性费米子的自旋极化。这些效应在动态磁场下增强了,该动力学磁场违反了由带杂交允许的频带工艺引起的热平衡。讨论了固体中的狄拉克电子的实验实现,并在夸克物质上略有破坏,包括在相对论的重子碰撞过程中引起的夸克物质,包括稀释的重型夸克。

Spins of relativistic fermions are related to their orbital degrees of freedom. In order to quantify the effect of hybridization between relativistic and nonrelativistic degrees of freedom on spin-orbit coupling, we focus on the spin-orbital (SO) crossed susceptibility arising from spin-orbit coupling. The SO crossed susceptibility is defined as the response function of their spin polarization to the "orbital" magnetic field, namely the effect of magnetic field on the orbital motion of particles as the vector potential. Once relativistic and nonrelativistic fermions are hybridized, their SO crossed susceptibility gets modified at the Fermi energy around the band hybridization point, leading to spin polarization of nonrelativistic fermions as well. These effects are enhanced under a dynamical magnetic field that violates thermal equilibrium, arising from the interband process permitted by the band hybridization. Its experimental realization is discussed for Dirac electrons in solids with slight breaking of crystalline symmetry or doping, and also for quark matter including dilute heavy quarks strongly hybridized with light quarks, arising in a relativistic heavy-ion collision process.

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