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      Variational Lang–Firsov Approach Plus Møller–Plesset Perturbation Theory with Applications to Ab Initio Polariton Chemistry

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          Many-Particle Physics

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            Py SCF: the Python-based simulations of chemistry framework

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              Single-molecule optomechanics in “picocavities”

              Trapping light with noble metal nanostructures overcomes the diffraction limit and can confine light to volumes typically on the order of 30 cubic nanometers. We found that individual atomic features inside the gap of a plasmonic nanoassembly can localize light to volumes well below 1 cubic nanometer ("picocavities"), enabling optical experiments on the atomic scale. These atomic features are dynamically formed and disassembled by laser irradiation. Although unstable at room temperature, picocavities can be stabilized at cryogenic temperatures, allowing single atomic cavities to be probed for many minutes. Unlike traditional optomechanical resonators, such extreme optical confinement yields a factor of 106 enhancement of optomechanical coupling between the picocavity field and vibrations of individual molecular bonds. This work sets the basis for developing nanoscale nonlinear quantum optics on the single-molecule level.
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                Author and article information

                Contributors
                (View ORCID Profile)
                (View ORCID Profile)
                Journal
                Journal of Chemical Theory and Computation
                J. Chem. Theory Comput.
                American Chemical Society (ACS)
                1549-9618
                1549-9626
                February 13 2024
                February 01 2024
                February 13 2024
                : 20
                : 3
                : 1143-1156
                Affiliations
                [1 ]Department of Chemistry, Columbia University, 3000 Broadway, New York, New York 10027, United States
                Article
                10.1021/acs.jctc.3c01166
                38300885
                eb11a8cd-fcdb-48a8-a219-9540ee7f2bf6
                © 2024

                https://doi.org/10.15223/policy-029

                https://doi.org/10.15223/policy-037

                https://doi.org/10.15223/policy-045

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