论文标题

相干的单旋转电子谐振光谱谱图在掺杂的聚乙炔中出现特殊点奇异性

Coherent single-spin electron resonance spectroscopy manifested at an exceptional-point singularity in a doped polyacetylene

论文作者

Dunham, Yujin, Kanki, Kazuki, Garmon, Savannah, Ordonez, Gonzalo, Tanaka, Satoshi

论文摘要

根据复杂的光谱分析,研究了碱原子掺杂聚乙二醇中自旋依赖性电荷转移衰减,揭示了受自旋轨道相互作用影响的单旋旋转zeman分裂。使用Brillouin-Wigner-Feshbach投射方法,非赫米特式有效的哈密顿量是从总体系统中得出的,其中显微镜旋转依赖性耗散效应正确地纳入了能量依赖性的自我能源中。由于本方法维持了总系统的动态和手性对称性,因此我们在统一的角度发现了两种类型的特殊点(EP)奇异点:EP表面和EP环分别归因于动态和手性对称性的破坏。我们透露,相干的单旋电子共振(SSESR)频谱反映了系统的复杂特征光谱。我们已经根据liouville空间途径方法在非线性响应函数方面制定了SSESR谱,在那里我们使用总汉密尔顿总体的复杂特征态构建了liouville空间基础。我们已经计算了一维傅立叶变换SSESR(1dft和2dft)光谱,该光谱反映了供体位点的自旋 - 延报动力学。虽然1dft SSESR频谱反映了复杂的特征谱光谱,但2DFT提供了有关自旋 - 浮动动力学中量子相干性的详细信息,作为两个频率之间的互相关。我们发现,由于EP环的归一化因子消失和共振效应,相干SSESR围绕EP环奇异性的巨大响应。我们发现,在2DFT频谱中的幅度上的巨大响应要比1DFT频谱大得多,这有望使2DFT SSESR成为观察分子中单旋转响应的有用工具。

Spin-dependent charge transfer decay in an alkali atom doped polyacetylene is studied in terms of the complex spectral analysis, revealing the single-spin Zeeman splitting influenced by the spin-orbit interaction. Nonhermitian effective Hamiltonian has been derived from the total system hermitian Hamiltonian using Brillouin-Wigner-Feshbach projection method, where the microscopic spin-dependent dissipation effect is correctly incorporated in the energy-dependent self-energy. Since the present method maintains the dynamical and chiral symmetries of the total system, we discovered two types of exceptional point (EP) singularities in a unified perspective: the EP surface and EP ring are attributed to the dynamical and chiral symmetry breaking, respectively. We have revealed that the coherent single-spin electron resonance (SSESR) spectrum reflects the complex eigenenergy spectrum of the system. We have formulated the SSESR spectrum in terms of the nonlinear response function in the Liouville-space pathway approach, where we have constructed the Liouville space basis using the complex eigenstates of the total Hamiltonian. We have calculated the one- and two-dimensional Fourier transform SSESR (1DFT and 2DFT) spectra reflecting the spin-relaxation dynamics at the donor site. While the 1DFT SSESR spectrum reflects the complex eigenenergy spectrum, the 2DFT gives detailed information on the quantum coherence in the spin-relaxation dynamics as a cross-correlation between the two frequencies. We found a giant response of the coherent SSESR around the EP ring singularity due to the vanishing normalization factors at the EP ring and the resonance effect. We have discovered that the giant response is much larger in magnitudes in the 2DFT spectrum than in the 1DFT spectrum, which promises the 2DFT SSESR a useful tool to observe the single-spin response in a molecule.

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