Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)
Ekspla PGx01 皮秒光学参量发生器(OPA)

¥50万 - 100万

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PGX01

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欧洲

  • 金牌
  • 第17年
  • 一般经销商
  • 营业执照已审核
核心参数

系统特色:

  • 193 至 16000 nm超宽光谱调谐范围

  • 峰值功率高 (>50 MW) 是非线性光学应用的理想选择

  • 线宽窄 <6 cm?1

  • 电动,无需手动调谐。调谐范围193?–?2300 nm 或 420?–?10000 nm 区间

  • 通过手持控制盒遥控

  • 提供LabVIEW™驱动。个人计算机通过USB端口(RS232 可选)控制激光器

相关应用:

  • 非线性光谱学: 振动和频光谱(vibrational-SFG), 表面倍频光谱(surface-SH), 相干反斯托克斯拉曼散射(CARS), Z-扫描(Z-scan)

  • 泵浦-探针(Pump-probe)实验

  • 激光诱导荧光(LIF)

  • 其它激光光谱学应用

  • 采用Ekspla由30皮秒20赫兹30毫焦激光器,皮秒光学参量振荡放大器PG401和参量差频器构成的振动和频光谱(SFG)测量系统,对液滴撞击覆盖LB(Langmuir-Blodgett)膜表面的动力学过程进行了研究和分析

    其他 2018-01-31

  • An imaging fibre bundle is demonstrated for spatially-multiplexed probe beam delivery in OCT, with the aim of eliminating the mechanical scanning currently required at the probe tip in endoscopic systems. Each fibre in the bundle addresses a Fizeau interferometer formed between the bundle end and the sample, allowing acquisition of information across a plane with a single measurement. Depth scanning components are now contained within a processing interferometer external to the completely passive endoscope probe. The technique has been evaluated in our laboratory for non-biological samples. Images acquired using the bundle-based system are presented. The potential of the system is assessed, with reference to SNR performance and acquisition speed.

    医疗/卫生 2016-10-24

  • An imaging fibre bundle is demonstrated for spatially-multiplexed probe beam delivery in OCT, with the aim of eliminating the mechanical scanning currently required at the probe tip in endoscopic systems. Each fibre in the bundle addresses a Fizeau interferometer formed between the bundle end and the sample, allowing acquisition of information across a plane with a single measurement. Depth scanning components are now contained within a processing interferometer external to the completely passive endoscope probe. The technique has been evaluated in our laboratory for non-biological samples. Images acquired using the bundle-based system are presented. The potential of the system is assessed, with reference to SNR performance and acquisition speed.

    医疗/卫生 2016-10-24

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