非平衡态热力学
振动能量弛豫
量子隧道
分子振动
放松(心理学)
电荷(物理)
原子物理学
电子
自由度(物理和化学)
库仑阻塞
分子
材料科学
分子物理学
化学物理
物理
凝聚态物理
激发态
量子力学
电压
心理学
社会心理学
晶体管
作者
Xinya Bian,Zhixin Chen,Jakub K. Sowa,Charalambos Evangeli,Bart Limburg,Jacob L. Swett,Jonathan Baugh,G. Andrew D. Briggs,Harry L. Anderson,Jan A. Mol,James Oscar Thomas
标识
DOI:10.1103/physrevlett.129.207702
摘要
The outcome of an electron-transfer process is determined by the quantum-mechanical interplay between electronic and vibrational degrees of freedom. Nonequilibrium vibrational dynamics are known to direct electron-transfer mechanisms in molecular systems; however, the structural features of a molecule that lead to certain modes being pushed out of equilibrium are not well understood. Herein, we report on electron transport through a porphyrin dimer molecule, weakly coupled to graphene electrodes, that displays sequential tunneling within the Coulomb-blockade regime. The sequential transport is initiated by current-induced phonon absorption and proceeds by rapid sequential transport via a nonequilibrium vibrational distribution of low-energy modes, likely related to torsional molecular motions. We demonstrate that this is an experimental signature of slow vibrational dissipation, and obtain a lower bound for the vibrational relaxation time of 8 ns, a value dependent on the molecular charge state.
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