化学
发光
光化学
量子位元
量子
化学物理
光电子学
量子力学
物理
作者
Sebastian M. Kopp,Shunta Nakamura,Brian T. Phelan,Yong Rui Poh,Samuel B. Tyndall,P. Brown,Yuheng Huang,Joel Yuen-Zhou,Matthew D. Krzyaniak,Michael R. Wasielewski
摘要
Optical-spin interfaces that enable the photoinitialization, coherent microwave manipulation, and optical read-out of ground state spins have been studied extensively in solid-state defects such as diamond nitrogen vacancy (NV) centers and are promising for quantum information science applications. Molecular quantum bits (qubits) offer many advantages over solid-state spin centers through synthetic control of their optical and spin properties and their scalability into well-defined multiqubit arrays. In this work, we report an optical-spin interface in an organic molecular qubit consisting of two luminescent tris(2,4,6-trichlorophenyl)methyl (TTM) radicals connected via the
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