SHBC 是一种二次谐波带宽压缩器,设计用于从 CARBIDE 和 PHAROS 飞秒激光器的宽带输出中产生窄带宽皮秒脉冲。
SHBC-515 和 SHBC-NB 两种型号都能创建多功能光学设置,将窄带宽皮秒脉冲与可调谐波长的宽带飞秒脉冲结合起来。这些设置对于和频发生 (SFG) 光谱和飞秒受激拉曼光谱 (FSRS) 尤为重要。
此外,标准 SHBC 还可用作 ORPHEUS-PS 的泵浦,提供可调皮秒输出。
规格参数
型号 | SHBC-515 | SHBC-NB |
---|---|---|
输出特性 | ||
输出波长 1) | 515 nm ± 5 nm | 515 nm ± 5 nm |
输出波长 1) | 515 nm ± 5 nm | |
转换效率 | > 30% | > 6% @ 3 – 6 µJ 泵浦光; > 10% @ 6 – 30 µJ 泵浦光; > 15% @ 30 – 200 µJ 泵浦光 |
输出脉冲带宽 | < 10 cm‑1 2) | < 2 cm‑1 |
脉宽 | 2 – 4 ps 2) 3) | 50 – 100 ps |
泵浦激光器的要求 | ||
泵浦光源 | 带有未压缩输出的 CARBIDE 或 PHAROS 激光器 4) | CARBIDE 或 PHAROS 4) |
重复频率 | 单脉冲 – 1 MHz | 单脉冲 – 1 MHz |
重复频率 | 单脉冲 – 1 MHz | |
泵浦光脉冲能量 | 40 μJ – 4 mJ | 3 – 200 µJ |
最大泵浦光功率 | 40 W | 10 W |
外形尺寸 | ||
输入高度 | 70 mm | 125 mm |
输出高度 | 80 mm | 125 mm |
主体尺寸 (长×宽×高) | 426 × 351 × 119 mm | 400 × 195 × 187 mm |
型号 | SHBC-515 | SHBC-NB |
---|
- 取决于泵浦激光器型号。
- SHBC-515 可以调节到更短的脉宽,但是随着脉宽变短带宽会相应增加。
- 与 ORPHEUS-PS 搭配使用时,可优化光谱宽度和脉冲持续时间,以获得最佳 OPA 性能。
- 与 PHAROS-UP 不兼容。
相关期刊
Direct imaging of electric field behavior in 2,7-diphenyl[1]benzothieno[3,2-b][1]benzothiophene organic field-effect transistors by sum-frequency generation imaging microscopy
C. Katagiri, T. Miyamae, H. Li, F. Yang, and S. Baldelli
Physical Chemistry Chemical Physics • 2021
Influence of Microcrystallinity on the CO/Pt(poly) Electrode Surface Using Sum Frequency Generation Microscopy Combined With Electrochemistry
H. Li, and S. Baldelli
The Journal of Physical Chemistry C • 2021
Ultraviolet resonance Raman spectroscopy of anthracene: Experiment and theory
T. Holtum, J. Bloino, C. Pappas, V. Kumar, V. Barone et al.
Journal of Raman Spectroscopy • 2021
Ultraviolet resonance Raman spectroscopy with a continuously tunable picosecond laser: Application to the supramolecular ligand guanidiniocarbonyl pyrrole (GCP)
V. Kumar, T. Holtum, D. Sebena, M. Giese, J. Voskuhl et al.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy • 2021
Robust Binding of Disulfide-Substituted Rhenium Bipyridyl Complexes for CO2 Reduction on Gold Electrodes
M. Cattaneo, F. Guo, H. R. Kelly, P. E. Videla, L. Kiefer et al.
Frontiers in Chemistry • 2020
UV Resonance Raman Spectroscopy of the Supramolecular Ligand Guanidiniocarbonyl Indole (GCI) with 244 nm Laser Excitation
T. Holtum, V. Kumar, D. Sebena, J. Voskuhl, and S. Schlücker
Beilstein Institut • 2020
Incoherent phonon population and exciton-exciton annihilation dynamics in monolayer WS2 revealed by time-resolved Resonance Raman scattering
S. Han, C. Boguschewski, Y. Gao, L. Xiao, J. Zhu et al.
Optics Express • 2019
Plasmonic Effects of Au Nanoparticles on the Vibrational Sum Frequency Spectrum of 4-Nitrothiophenol
M. Linke, M. Hille, M. Lackner, L. Schumacher, S. Schlücker et al.
The Journal of Physical Chemistry C • 2019
Ultrafast background-free ro-vibrational fs/ps-CARS thermometry using an Yb:YAG crystal-fiber amplified probe
R. Santagata, M. Scherman, M. Toubeix, M. Nafa, B. Tretout et al.
Optics Express • 2019
Vibrational Energy Redistribution between CH Stretching Modes in Alkyl Chain Monolayers Revealed by Time-Resolved Two-Color Pump–Probe Sum Frequency Spectroscopy
M. Lackner, M. Hille, and E. Hasselbrink
The Journal of Physical Chemistry Letters • 2019
1
2
资料下载
产品数据表
SHBC 二次谐波带宽压缩器
产品数据表
产品目录
飞秒激光器飞秒科研系统
产品目录
概述
规格参数
性能
轮廓图
相关产品
相关期刊
资料下载
Overview