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增强有机分子量子比特的光探测磁共振信号。

Enhancing the Optically Detected Magnetic Resonance Signal of Organic Molecular Qubits.

作者信息

Poh Yong Rui, Yuen-Zhou Joel

机构信息

Department of Chemistry and Biochemistry, University of California San Diego, La Jolla, California 92093, United States.

出版信息

ACS Cent Sci. 2025 Jan 3;11(1):116-126. doi: 10.1021/acscentsci.4c01632. eCollection 2025 Jan 22.

Abstract

In quantum information science and sensing, electron spins are often purified into a specific polarization through an optical-spin interface, a process known as optically detected magnetic resonance (ODMR). Diamond-NV centers and transition metals are both excellent platforms for these so-called color centers, while metal-free molecular analogues are also gaining popularity for their extended polarization lifetimes, milder environmental impacts, and reduced costs. In our earlier attempt at designing such organic high-spin π-diradicals, we proposed to spin-polarize by shelving triplet = ±1 populations as singlets. This was recently verified by experiments albeit with low ODMR contrasts of <1% at temperatures above 5 K. In this work, we propose to improve the ODMR signal by moving singlet populations back into the triplet = 0 sublevel, designing a true carbon-based molecular analogue to the NV center. Our proposal is based upon transition-orbital and group-theoretical analyses of beyond-nearest-neighbor spin-orbit couplings, which are further confirmed by ab initio calculations of a realistic trityl-based radical dimer. Microkinetic analyses point toward high ODMR contrasts of around 30% under experimentally feasible conditions, a stark improvement from previous works. Finally, in our quest toward ground-state optically addressable molecular spin qubits, we exemplify how our symmetry-based design avoids Zeeman-induced singlet-triplet mixings, setting the scene for realizing electron spin qubit gates.

摘要

在量子信息科学与传感领域,电子自旋常常通过光 - 自旋界面被纯化到特定的极化状态,这一过程被称为光探测磁共振(ODMR)。金刚石 - NV 中心和过渡金属都是这些所谓色心的优秀平台,而无金属分子类似物因其更长的极化寿命、更温和的环境影响以及更低的成本也越来越受到关注。在我们早期设计此类有机高自旋 π - 双自由基的尝试中,我们提议通过将三重态 (M_S = \pm1) 态的粒子数作为单重态搁置来实现自旋极化。最近这一设想得到了实验验证,尽管在温度高于 5 K 时 ODMR 对比度低于 1%。在这项工作中,我们提议通过将单重态粒子数转移回三重态 (M_S = 0) 子能级来提高 ODMR 信号,设计一种真正基于碳的 NV 中心分子类似物。我们的提议基于对超近邻自旋 - 轨道耦合的跃迁轨道和群论分析,基于现实的基于三苯甲基的自由基二聚体的从头算计算进一步证实了这一点。微观动力学分析表明,在实验可行的条件下,ODMR 对比度可高达约 30%,与之前的工作相比有显著提高。最后,在我们追求基态光学可寻址分子自旋量子比特的过程中,我们举例说明了基于对称性的设计如何避免塞曼诱导的单重态 - 三重态混合,为实现电子自旋量子比特门奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73ca/11758272/59df7cdc1277/oc4c01632_0001.jpg

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