Absorption of free carriers in diamond determined from the visible to the mid-infrared by femtosecond two-photon absorption spectroscopy
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Reference19 articles.
1. Picosecond 266 nm photolysis of neat liquids: Solvated electron formation in water and alcohols
2. Femtosecond studies of electrons in liquids
3. Novel Precursors of Solvated Electrons in Water: Evidence for a Charge Transfer Process
4. Dielectric breakdown threshold, two-photon absorption, and other optical damage mechanisms in diamond
5. Subpicosecond ultraviolet laser ablation of diamond: Nonlinear properties at 248 nm and time‐resolved characterization of ablation dynamics
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2. Measurement of Two-Photon Absorption Coefficient of 1030 nm Ultrashort Laser Pulses on Natural Diamond Color Centers;Optics and Spectroscopy;2023-10
3. Post-2000 nonlinear optical materials and measurements: Data tables and best practices;Journal of Physics: Photonics;2022-10-27
4. Broadband Nonlinear Optical Response of Nitrogen-Doped Diamond;Frontiers in Materials;2021-09-13
5. Wide-Band-Gap Semiconductor Scintillators;Physics of Fast Processes in Scintillators;2020
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