论文标题
有机偏置冷凝物中的不一致的电荷转运
Incoherent charge transport in an organic polariton condensate
论文作者
论文摘要
我们研究了北极凝结如何修饰有机材料中的电荷传输。在典型的有机材料中,电荷运输通过不连贯的跳跃进行。因此,我们提供了一种方法来确定这种跳跃过程的速率和最终状态如何受强度光耦合和偏振子凝结的影响。我们展示了跳跃过程如何从具有有限激发密度的状态开始时产生激励。也就是说,跳跃如何通过创建上极化剂,光学无效的激发激烈的黑暗状态或令人兴奋的振动边带来改变下极化孔冷凝物的状态。尽管这些过程的矩阵元素可能很大,但对于室温下的典型材料,这种激发被热因子抑制,基态过程占主导地位。因此,我们研究基态跳率如何取决于冷凝水密度,物质耦合和空腔光子失谐。所有这些因素都会改变与光学活性分子相关的振动构型,这可以通过增加或减少与带电分子的状态的振动重叠来增强或抑制跳跃。我们表明,跳高速率可能对失谐和凝结密度呈指数敏感,从而使跳高率的增加或降低两个数量级。
We study how polariton condensation modifies charge transport in organic materials. In typical organic materials, charge transport proceeds via incoherent hopping. We therefore provide an approach to determine how the rate and final state of this hopping process is affected by strong matter-light coupling and polariton condensation. We show how the hopping process may create excitations when starting from a state with a finite excitation density. That is, how hopping can change the state of a lower polariton condensate by creating upper polaritons, optically inactive excitonic dark states, or by exciting vibrational sidebands. While the matrix elements for these processes can be large, for typical materials at room temperature, such excitations are suppressed by thermal factors, and ground state processes dominate. We thus study how the ground state hopping rate depends on condensate density, matter-light coupling, and cavity photon detuning. All these factors change the vibrational configuration associated with the optically active molecules, which can enhance or suppress hopping by increasing or decreasing the vibrational overlap with the state of a charged molecule. We show that hopping rates can be exponentially sensitive to detuning and condensate density, allowing an increase or decrease of hopping rate by two orders of magnitude.