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量子技术的未来:来自溶液处理的可调谐材料的超荧光。

The future of quantum technologies: superfluorescence from solution-processed, tunable materials.

作者信息

Russ Brendan, Eisler Carissa N

机构信息

University of California, Los Angeles, Los Angeles, USA.

出版信息

Nanophotonics. 2024 Feb 28;13(11):1943-1951. doi: 10.1515/nanoph-2023-0919. eCollection 2024 May.

Abstract

One of the most significant and surprising recent developments in nanocrystal studies was the observation of superfluorescence from a system of self-assembled, colloidal perovskite nanocrystals [G. Rainò, M. A. Becker, M. I. Bodnarchuk, R. F. Mahrt, M. V. Kovalenko, and T. Stöferle, "Superfluorescence from lead halide perovskite quantum dot superlattices," , vol. 563, no. 7733, pp. 671-675, 2018]. Superfluorescence is a quantum-light property in which many dipoles spontaneously synchronize in phase to create a collective, synergistic photon emission with a much faster lifetime. Thus, it is surprising to observe this in more inhomogenous systems as solution-processed and colloidal structures typically suffer from high optical decoherence and non-homogeneous size distributions. Here we outline recent developments in the demonstration of superfluorescence in colloidal and solution-processed systems and explore the chemical and materials science opportunities allowed by such systems. The ability to create bright and tunable superfluorescent sources could enable transformative developments in quantum information applications and advance our understanding of quantum phenomena.

摘要

纳米晶体研究中最近最显著且令人惊讶的进展之一是在自组装的胶体钙钛矿纳米晶体系统中观察到了超荧光现象[G. 拉伊诺、M. A. 贝克尔、M. I. 博德纳丘克、R. F. 马尔特、M. V. 科瓦连科和T. 施特费勒,《卤化铅钙钛矿量子点超晶格的超荧光》,《自然》,第563卷,第7733期,第671 - 675页,2018年]。超荧光是一种量子光特性,其中许多偶极子会自发地同相同步,以产生具有快得多的寿命的集体协同光子发射。因此,在像溶液处理的和胶体结构这样更不均匀的系统中观察到这种现象是令人惊讶的,因为这些结构通常存在高光退相干和尺寸分布不均匀的问题。在这里,我们概述了在胶体和溶液处理系统中证明超荧光的最新进展,并探索此类系统所带来的化学和材料科学机遇。创造明亮且可调谐的超荧光源的能力可能会在量子信息应用中带来变革性发展,并推进我们对量子现象的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d47b/11501137/0c8269f8e10c/j_nanoph-2023-0919_fig_001.jpg

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