Dual-chirp optical parameter amplification method and device for broadband laser pumping

An optical parametric amplification and laser pumping technology, applied in lasers, laser parts, phonon exciters, etc., can solve problems such as insufficient support for periodic pulse width pulse output

Active Publication Date: 2017-01-11
WUHAN INSTITUTE OF TECHNOLOGY
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Problems solved by technology

Although the 40 femtosecond laser pulse has a large bandwidth, it is still not enough to support the pulse output of cycle-level pulse width, so the gain bandwidth of the system will be obviously limited in the optical parametric amplification system

Method used

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  • Dual-chirp optical parameter amplification method and device for broadband laser pumping
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  • Dual-chirp optical parameter amplification method and device for broadband laser pumping

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Embodiment Construction

[0030] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0031] A double-chirped optical parametric amplification method pumped by a broadband laser of the present invention comprises the following steps:

[0032] S1. Generate an initial narrowband laser.

[0033] S2. Divide the initial narrowband laser light into two beams, including narrowband pump light and narrowband seed light. Increasing the bandwidth of the narrow-band pumping light to obtain broadband pumping light, and introducing positive chirp to it to obtain broadband chirped pumping light. Increase the bandwidth of the narrowband seed light to obtain broadband seed light, and introduce negative chirp to it to obtain broadband chirped seed light.

[0034] S3. Adjusting the delay between the broadband chirped pump light and the broadband chirped seed light, so that the two overlap in the time domain and enter the nonlinear crystal for op...

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Abstract

The invention discloses a dual-chirp optical parameter amplification method and device for broadband laser pumping. An initial laser source generates narrow-band laser which is divided into two beams, wherein the beam with the high energy is adopted as narrow-band pumping light, and broadband chirp pumping light is obtained after a spectrum widening device, and the light is emitted into a nonlinear crystal through a dichroic mirror; the beam with the low energy enters a super-continuum white light generator and a chirp mirror pair to obtain broadband chirp seed light, is emitted into the non-linear crystal through the dichroic mirror, and is coupled with the broadband chirp pumping light to be subjected to optical parameter amplification; finally, periodic magnitude pulse width femtosecond idler frequency light is obtained through a beam splitter and a pulse compressor. The spectrum widening broadband chirp pumping light is adopted, and the more frequency components are obtained; the broadband chirp pumping light and broadband chirp seed light dual-chirp scheme is adopted, and the instantaneous frequency correspondences are opposite, so that the spectral brand width of output idler frequency light is increased, and the femtosecond idler frequency light output of the periodic magnitude pulse width is achieved.

Description

technical field [0001] The invention relates to the field of ultrafast laser technology, in particular to a double-chirped optical parametric amplification method and device for broadband laser pumping. Background technique [0002] Period-level high-energy laser pulses have important applications in research fields such as attosecond optics, strong-field physics, and ultrafast spectroscopy because of their good time resolution and extremely high peak power. Therefore, the study of generating period-level ultrashort pulses has attracted great attention from scientists. In the near-infrared band, common titanium sapphire (Ti:Sapphire) femtosecond lasers can already effectively generate ultrashort and ultraintense pulses with a central wavelength of 800 nanometers. However, in the study of the interaction between laser and matter, many key basic theories and practical applications not only require ultra-short pulse width and ultra-high peak intensity, but also require the cen...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H01S3/094H01S3/00H01S3/10
CPCH01S3/0057H01S3/094H01S3/10
Inventor 洪作飞陆培祥
Owner WUHAN INSTITUTE OF TECHNOLOGY
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