...
首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Peierls transitions in ionic organic charge-transfer crystals with spin and charge degrees of freedom
【24h】

Peierls transitions in ionic organic charge-transfer crystals with spin and charge degrees of freedom

机译:具有自旋和电荷自由度的离子有机电荷转移晶体中的Peierls跃迁

获取原文
获取原文并翻译 | 示例

摘要

The quasi-one-dimensional electronic structure of organic charge-transfer (CT) salts rationalizes Peierls transitions in mixed or segregated stacks of pi-electron donors (D) and acceptors (A). A microscopic Peierls-Hubbard model, H-CT, is presented for CT salts with mixed stacks (D(rho+)A(rho-))(n) and ionicity rho > 0.7. Dimerization opens a Peierls gap that, due to electron correlation, is the singlet-triplet gap, EST. In contrast to spin-Peierls systems, such as Heisenberg spin chains with rho = 1 and T-SP < 20 K, Peierls transitions in CT salts with rho < 1 occur at higher T-P and involve both spin and charge degrees of freedom. Linear electron-phonon coupling and an adiabatic approximation for a harmonic lattice are used to model the dimerization amplitude delta(T) for T < T-P, the magnetic (spin) susceptibility chi(T), and the relative infrared intensity of totally symmetric molecular modes. Exact thermodynamics of HCT for stacks up to N = 12 sites are applied to two CT salts with T-P similar to 50 and 120 K whose magnetism and infrared have not been modeled previously and to CT salts with inaccessibly high T-P > 350 K whose description has been difficult. Ionic CT salts are correlated Peierls systems with a degenerate ground state (GS) at T = 0 whose elementary excitations are spin solitons, while dimerized ion-radical stacks that support triplet-spin excitons have nondegenerate GS. In less ionic CT salts, modulation of HCT parameters on cooling or under pressure leads to Peierls and/or neutral-ionic transitions of the GS, without appreciable thermal population of excited states. Correlations change the gap equation that relates EST at T = 0 to T-P compared to free electrons, and size convergence is fast in stacks with large delta(0) and high T-P.
机译:有机电荷转移(CT)盐的准一维电子结构合理化了pi电子供体(D)和受体(A)混合或隔离堆叠中的Peierls跃迁。提出了用于混合盐(D(rho +)A(rho-))(n)和电离度rho> 0.7的CT盐的微观Peierls-Hubbard模型H-CT。二聚化产生一个Peierls间隙,由于电子相关性,该间隙为单重态-三重态间隙EST。与自旋Peierls系统(例如,rho = 1且T-SP <20 K的Heisenberg自旋链)相反,rho <1的CT盐中的Peierls跃迁在较高的T-P处发生,并涉及自旋和电荷自由度。线性电子-声子耦合和谐波晶格的绝热逼近可用来模拟T 350 K难以企及的CT盐。难。离子CT盐是相关的Peierls系统,在T = 0时具有简并的基态(GS),其基本激发是自旋孤子,而支持三重态自旋激子的二聚化离子自由基堆栈则具有未简并的GS。在离子含量较低的CT盐中,冷却或加压条件下HCT参数的调节会导致GS发生Peierls和/或中性离子跃迁,而没有明显的激发态热填充。与自由电子相比,相关性改变了将T = 0处的EST与T-P相关的间隙方程,并且在大delta(0)和高T-P的堆叠中,尺寸收敛很快。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 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