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Recent developments in the determination of the amplitude and phase of quantum oscillations for the linear chain of coupled orbits

机译:确定耦合轨道线性链的量子振动的幅值和相位的最新进展

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摘要

De Haas-van Alphen oscillations are studied for Fermi surfaces (FS) illustrating the model proposed by Pippard in the early sixties, namely the linear chain of orbits coupled by magnetic breakdown. This FS topology is relevant to many multiband quasi-two-dimensional (q-2D) organic metals such as κ-(BEDT-TTF)_2Cu(NCS)_2 and θ-(BEDT-TTF)_4CoBr_4(C_6H_4Cl_2) which are considered in detail. Whereas the Lifshits-Kosevich model only involves a first order development of field- and temperature-dependent damping factors, second order terms may have significant contribution to the Fourier components amplitude for such q-2D systems at high magnetic field and low temperature. The strength of these second order terms depends on the relative value of the involved damping factors, which are in turns strongly dependent on parameters such as the magnetic breakdown field, effective masses and, most of all, effective Lande factors. In addition, the influence of field-dependent Onsager phase factors on the oscillation spectra is considered.
机译:对费米表面(FS)的De Haas-van Alphen振动进行了研究,阐明了皮帕德(Pippard)在60年代初提出的模型,即由磁击穿耦合的线性轨道链。这种FS拓扑与许多多带准二维(q-2D)有机金属有关,例如κ-(BEDT-TTF)_2Cu(NCS)_2和θ-(BEDT-TTF)_4CoBr_4(C_6H_4Cl_2)详情。 Lifshits-Kosevich模型仅涉及与磁场和温度有关的阻尼因子的一阶展开,而对于此类q-2D系统,在高磁场和低温下,二阶项可能会对傅立叶分量振幅产生重大影响。这些二阶项的强度取决于所涉及的阻尼因子的相对值,而阻尼因子的相对值又强烈依赖于诸如击穿磁场,有效质量以及最重要的是有效兰德因子之类的参数。此外,还考虑了场相关的Onsager相位因子对振荡谱的影响。

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