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Highly nonlinear phenomena of self-organization of quasi-two-dimensional electron gas in high magnetic and electric fields

机译:高磁场和高电场中准二维电子气自组织的高度非线性现象

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The transverse electric field E_y that appears in lateral superlat_tices (2SLs) under Hall-measurement conditions, i.e. in the presence of a longitudinal applied electric field E_x and applied magnetic field H normal to the SL plane (H OZ) is calculated. In contrast to previous works devoted to this problem both applied electric and magnetic fields are treated as control parameters. By introducing the generalized function of entropy production (the synergetic potential) the kinetic behavior of a quasi-two-dimensional nonequilibrium electron gas is investigated from the viewpoint of self-organization and catastrophe theory. The field E_y contains both the Hall field and the spontaneous transverse electric field that exists without H. The magnetoresistance caused by the appearance of a spontaneous transverse EMF is investigated. Spontaneous transverse EMF, current_ voltage characteristics and magnetoresistance are multivalued and sign-changing functions of applied electric and magnetic fields. From the model computer simulations the observed multistability exhibits a large difference in the behavior of the system in high magnetic fields as compared to low one. The novel nonlinear effects such as first-order nonequilibrium phase transitions and hysteresis, induced by magnetic field are predicted. As the magnetic field is increased the nonlinear behaviors show self-organized hierarchical complexity, which manifests itself in fractalization of bifurcation set, whose self-similar fine structure leading to fractal-like folds of critical manifold sheets, resulting in fuzzy bifurcations, was discovered. Complex nonlinear behaviors including macrostate crisis and chaotic-looking intermittency of Hall-effect characteristics were discovered in limited nar_row ranges of the control parameter space.
机译:计算在霍尔测量条件下,即在存在纵向施加电场E_x和垂直于SL平面(H OZ)的施加磁场H的情况下出现在横向超晶格(2SLs)中的横向电场E_y。与以前致力于该问题的工作相反,施加的电场和磁场均被视为控制参数。通过引入熵产生的广义函数(协同势),从自组织和突变理论的角度研究了准二维非平衡电子气的动力学行为。场E_y包含霍尔场和不存在H的自发横向电场。研究了由自发横向EMF的出现引起的磁阻。自发的横向电动势,电流电压特性和磁阻是多值的,并且是施加电场和磁场的符号转换功能。从模型计算机仿真中,与低磁场相比,在高磁场中观察到的多重稳定性表现出很大的系统行为差异。预测了磁场引起的新型非线性效应,例如一阶非平衡相变和磁滞。随着磁场的增加,非线性行为表现出自组织的层级复杂性,这表现在分叉集的分形中,发现其自相似的精细结构导致临界流形板的分形折叠,从而导致模糊的分叉。在控制参数空间的有限nar_row范围内发现了复杂的非线性行为,包括宏观危机和霍尔效应特性的混沌连续性。

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