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Coherent and incoherent photon-assisted electron tunneling in optoelectronic molecular devices in soft solids - art. no. 045301

机译:软固体中光电分子器件中的相干和非相干光子辅助电子隧穿-艺术。没有。 045301

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摘要

An electron in a bath with slow degrees of freedom (such as soft solids, e.g., proteins) is driven by a strong time-dependent electric field. In this molecular device, the electron dynamics are characterized by quasicoherent oscillations with slow square-root decay even at room temperatures. The frequency of the oscillations and the equilibrium distribution are found essentially to depend on the field intensity and the medium parameters. The applied field effectively changes the relaxation time of the environment from fast to slow and vice versa. The quasicoherence allows for the prevention of overheating in the microdevice. It is also shown that the applied held is capable of changing the character of the electron dynamics from quasicoherence to incoherent decay. The electron transition probability strongly depends upon the applied voltage (bias) and at some values of the field parameters, this voltage can quickly switch the coherent transfer over to incoherent transfer and vice versa. Despite the slow electron transfer in the incoherence region, the equilibrium distribution can favor either products or reactants, depending upon the field intensity. In the incoherent regime, the electron localization is possible, All these features can be exploited in microcomputers or quantum Computers. [References: 61]
机译:自由度较低的熔池中的电子(例如软固体,例如蛋白质)受时间依赖性强电场驱动。在这种分子器件中,即使在室温下,电子动力学的特征也在于准相干振荡,其平方根衰减缓慢。发现振荡的频率和平衡分布基本上取决于场强和介质参数。所施加的场有效地将环境的松弛时间从快改变为慢,反之亦然。准相干性可以防止微型设备过热。还表明,所施加的保持能够将电子动力学的特性从准相干变为非相干衰减。电子跃迁几率很大程度上取决于所施加的电压(偏置),并且在某些场参数值下,该电压可以快速将相干传递转换为非相干传递,反之亦然。尽管在非相干区域中电子传输缓慢,但取决于场强,平衡分布可能有利于产物或反应物。在非相干状态下,电子定位是可能的。所有这些功能都可以在微型计算机或量子计算机中利用。 [参考:61]

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