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Hybrid architectures for molecular polaritonics

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Figshare2024-05-25 更新2026-04-28 收录
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https://figshare.com/articles/dataset/Hybrid_architectures_for_molecular_polaritonics/25414015
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Dataset “Coupled_metasurface”: Contains the frequency and coated/uncoated metasurface transmission data which is shown in Fig. 3. •Frequency is given in terahertz (THz) •The transmission is calculated from the fast Fourier transform of the THz time-domain spectroscopy (THz-TDS) measurements •The frequency/transmission is not cut to the bounds of the measurement noise floor which is roughly from 0.5-2.5 THz Dataset “Planar_mirror_cavity”: Contains the transmission map data of the standard Fabry-Perot cavity architecture which is shown in Fig. 4(a). •Frequency is given in THz •The transmission is calculated from the fast Fourier transform of the THz time-domain spectroscopy (THz-TDS) measurements •The frequency/transmission is not cut to the bounds of the measurement noise floor which is roughly from 0.5-2.5 THz •The transmission datasets are copied into columns in order of increasing cavity spacing (C-AA) •The relative cavity spacing is provided in column B Dataset “Hybrid_cavity_1”: Contains the transmission map data of the first hybrid cavity architecture which is presented in Fig. 4(b). •Frequency is given in THz •The transmission is calculated from the fast Fourier transform of the THz time-domain spectroscopy (THz-TDS) measurements •The frequency/transmission is not cut to the bounds of the measurement noise floor which is roughly from 0.5-2.5 THz •The transmission datasets are copied into columns in order of increasing cavity spacing (C-R) •The relative cavity spacing is provided in column B Dataset “Hybrid_cavity_2”: Contains the transmission map data of the second hybrid cavity architecture which is presented in Fig. 4(c). •Frequency is given in THz •The transmission is calculated from the fast Fourier transform of the THz time-domain spectroscopy (THz-TDS) measurements •The frequency/transmission is not cut to the bounds of the measurement noise floor which is roughly from 0.5-2.5 THz •The transmission datasets are copied into columns in order of increasing cavity spacing (C-Z) •The relative cavity spacing is provided in column B Dataset “Empty_hybrid_cavity”: Contains the transmission map data for the unfilled hybrid cavity architectured which is shown in Fig. S6(b) of the supplementary information. •Frequency is given in THz •The transmission is calculated from the fast Fourier transform of the THz time-domain spectroscopy (THz-TDS) measurements •The frequency/transmission is not cut to the bounds of the measurement noise floor which is roughly from 0.5-2.5 THz •The transmission datasets are copied into columns in order of increasing cavity spacing (C-P) •The relative cavity spacing is provided in column B
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2024-05-25
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