Plasmon enhanced Raman scattering effect for an atom near a carbon nanotube
Author:
Funder
Office of Science, U.S. Department of Energy
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference39 articles.
1. The ‘chemical’ (electronic) contribution to surface-enhanced Raman scattering
2. Chemical mapping of a single molecule by plasmon-enhanced Raman scattering
3. Ultrasensitive surface-enhanced Raman scattering based gold deposited silicon nanowires
4. Tuning surface-enhanced Raman scattering from graphene substrates using the electric field effect and chemical doping
5. Nitrogen-doped graphene: beyond single substitution and enhanced molecular sensing
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2. Controlling Single‐Photon Emission with Ultrathin Transdimensional Plasmonic Films;Annalen der Physik;2022-10-31
3. Collective Excitations and Optical Response of Ultrathin Carbon-Nanotube Films;Physical Review Applied;2021-03-01
4. Controlled exciton–plasmon coupling in a mixture of ultrathin periodically aligned single-wall carbon nanotube arrays;Journal of Applied Physics;2021-01-07
5. Optical Response of Ultrathin Periodically Aligned Single-Wall Carbon Nanotube Films;MRS Advances;2020-11
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