Single organic molecules for photonic quantum technologies

连贯性(哲学赌博策略) 光子学 光电子学 量子技术 量子 物理 材料科学 纳米技术 光子 光学 量子力学 开放量子系统
作者
Costanza Toninelli,Ilja Gerhardt,Alex S. Clark,Antoine Reserbat‐Plantey,Stephan Götzinger,Zoran Ristanović,Maja Colautti,Pietro Lombardi,Kyle D. Major,Irena Deperasińska,Wolfram H. P. Pernice,Frank H. L. Koppens,Β. Kozankiewicz,André Gourdon,Vahid Sandoghdar,Michel Orrit
出处
期刊:Cornell University - arXiv 被引量:7
摘要

Isolating single molecules in the solid state has allowed fundamental experiments in basic and applied sciences. When cooled down to liquid helium temperature, certain molecules show transition lines, that are tens of megahertz wide, limited only by the excited state lifetime. The extreme flexibility in the synthesis of organic materials provides, at low costs, a wide palette of emission wavelengths and supporting matrices for such single chromophores. In the last decades, the controlled coupling to photonic structures has led to an optimized interaction efficiency with light. Molecules can hence be operated as single photon sources and as non-linear elements with competitive performance in terms of coherence, scalability and compatibility with diverse integrated platforms. Moreover, they can be used as transducers for the optical read-out of fields and material properties, with the promise of single-quanta resolution in the sensing of charges and motion. We show that quantum emitters based on single molecules hold promise to play a key role in the development of quantum science and technologies.

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