首页> 外文期刊>Physical Review, B. Condensed Matter >PATH-INTEGRAL THEORY FOR LIGHT-ABSORPTION SPECTRA OF MANY-ELECTRON SYSTEMS IN INSULATING STATES DUE TO STRONG LONG-RANGE COULOMB REPULSION - NONLINEAR COUPLING BETWEEN CHARGE AND SPIN EXCITATIONS
【24h】

PATH-INTEGRAL THEORY FOR LIGHT-ABSORPTION SPECTRA OF MANY-ELECTRON SYSTEMS IN INSULATING STATES DUE TO STRONG LONG-RANGE COULOMB REPULSION - NONLINEAR COUPLING BETWEEN CHARGE AND SPIN EXCITATIONS

机译:强烈长距离库伦排斥的许多电子系统在绝缘状态下的光吸收谱的路径积分理论-电荷与自旋激发之间的非线性耦合

获取原文
获取原文并翻译 | 示例
           

摘要

We develop a path-integral formulation which is free from Grassmann algebras to calculate absorption spectra of strongly correlated electron systems. The Coulomb repulsions, including not only the short-range part but also a long-range part, are reduced into a time-dependent one-body Hamiltonian with only two kinds of Ising spin variables per site. The sums over these spin configurations are performed according to the quantum Monte Carlo techniques. By this method we disclose the electron correlation effects on absorption spectra. The method is applied to the one-dimensional half-filled electron systems, where the ground state is an insulating state due to the strong long-range Coulomb repulsion and contains large quantum fluctuations by low-energy collective spin excitations. The absorption spectrum shows an infrared divergence-like structure, which seems to arise from the simultaneous excitation of the charge-transfer exciton and collective spin excitations. The spectrum also contains new peaks on the high energy side which correspond to the multiple excitation of electron-hole pairs. Such a multiple excitation is caused by the electron correlation effect, through which the photogenerated electron and hole can excite other electron-hole pairs. Our result clearly shows that charge and spin of the electron are inseparable in a many-body system in an insulating state caused by the strong long-range Coulomb repulsion. [References: 8]
机译:我们开发了无格拉斯曼代数的路径积分公式,以计算强相关电子系统的吸收光谱。库仑排斥不仅包括短程部分,而且包括长程部分,都被简化为时间相关的一身哈密顿量,每个位置仅具有两种伊辛自旋变量。这些自旋配置的总和是根据量子蒙特卡洛技术进行的。通过这种方法,我们公开了电子相关性对吸收光谱的影响。该方法适用于一维半填充电子系统,该系统的基态由于强大的远程库仑排斥力而处于绝缘状态,并且由于低能集体自旋激发而具有较大的量子涨落。吸收光谱显示出类似红外发散的结构,这似乎是由电荷转移激子和集体自旋激发的同时激发引起的。该光谱还在高能侧包含新峰,这些新峰对应于电子-空穴对的多次激发。这种多重激发是由电子相关效应引起的,通过该效应,光生电子和空穴可以激发其他电子-空穴对。我们的结果清楚地表明,由于强远程库仑排斥,在处于绝缘状态的多体系统中,电子的电荷和自旋是不可分割的。 [参考:8]

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号