Fang A, Zhang Z Q, Louie Steven G, Chan C T
Department of Physics, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Institute for Advanced Study, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Proc Natl Acad Sci U S A. 2017 Apr 18;114(16):4087-4092. doi: 10.1073/pnas.1620313114. Epub 2017 Apr 4.
We discovered unique Anderson localization behaviors of pseudospin systems in a 1D disordered potential. For a pseudospin-1 system, due to the absence of backscattering under normal incidence and the presence of a conical band structure, the wave localization behaviors are entirely different from those of conventional disordered systems. We show that there exists a critical strength of random potential ([Formula: see text]), which is equal to the incident energy ([Formula: see text]), below which the localization length [Formula: see text] decreases with the random strength [Formula: see text] for a fixed incident angle [Formula: see text] But the localization length drops abruptly to a minimum at [Formula: see text] and rises immediately afterward. The incident angle dependence of the localization length has different asymptotic behaviors in the two regions of random strength, with [Formula: see text] when [Formula: see text] and [Formula: see text] when [Formula: see text] The existence of a sharp transition at [Formula: see text] is due to the emergence of evanescent waves in the systems when [Formula: see text] Such localization behavior is unique to pseudospin-1 systems. For pseudospin-1/2 systems, there is also a minimum localization length as randomness increases, but the transition from decreasing to increasing localization length at the minimum is smooth rather than abrupt. In both decreasing and increasing regions, the [Formula: see text] dependence of the localization length has the same asymptotic behavior [Formula: see text].
我们在一维无序势中发现了赝自旋系统独特的安德森局域化行为。对于赝自旋-1系统,由于正常入射下不存在背散射且存在锥形能带结构,其波局域化行为与传统无序系统完全不同。我们表明存在一个随机势的临界强度([公式:见原文]),它等于入射能量([公式:见原文]),在该临界强度以下,对于固定的入射角[公式:见原文],局域化长度[公式:见原文]随随机强度[公式:见原文]减小。但局域化长度在[公式:见原文]时突然降至最小值,随后立即上升。在随机强度的两个区域中,局域化长度的入射角依赖性具有不同的渐近行为,当[公式:见原文]时[公式:见原文],当[公式:见原文]时[公式:见原文]。在[公式:见原文]处出现尖锐转变是由于当[公式:见原文]时系统中出现了倏逝波。这种局域化行为是赝自旋-1系统所特有的。对于赝自旋-1/2系统,随着无序度增加也存在最小局域化长度,但在最小值处从局域化长度减小到增加的转变是平滑的而非突然的。在减小和增加区域中,局域化长度的[公式:见原文]依赖性都具有相同的渐近行为[公式:见原文]。