High-contrast pulse measurement method and device

A high-contrast, measurement method technology, applied in instruments and other directions, can solve the problems of low signal, unmeasured autocorrelation signal, inaccurate measurement of autocorrelation signal, etc., to achieve high signal-to-noise ratio, accurate pulse width and high precision. Effect

Active Publication Date: 2017-01-04
UNIV OF SHANGHAI FOR SCI & TECH
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Problems solved by technology

However, the pulse width or pulse contrast measured by this method also has some shortcomings. When the intensity of the signal to be measured is low, it may cause The signal obtained by multiplication or sum frequency is too low
This will lead to inaccurate measurement of the autocorrelation signal of the pulse width or the inability to measure the autocorrelation signal due to the influence of the noise signal

Method used

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Embodiment Construction

[0018] The high-contrast pulse measurement method of the present invention specifically is to make the output pulse pass through a beam splitting device, and divide it into two identical paths, one pulse passes through the modulator, and the other pulse passes through the delay device; the last two paths of light pass through the combination The beam device is connected to the spectrum analyzer; from the spectrum analyzer, the modulation signal from high to low or from low to high that changes with the delay length is obtained. The modulation signal is a pulse autocorrelation signal expressed in logarithmic form. Through computer analysis and processing, the width of the measured pulse and the contrast of the pulse are finally obtained.

[0019] Such as figure 1 The block diagram of the high-contrast pulse measurement device is shown, including a beam splitter, a delay device, a modulator, a beam combiner, and a spectrum analyzer. The beam splitter divides the pulse to be mea...

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Abstract

The present invention relates to a high-contrast pulse measurement method and device. The method is characterized in that a beam splitting device divides a to-be-measured pulse into two same pulses, one pulse is modulated and outputted by a modulator, and a time delay device carries out the time delay on the other pulse; finally, the two pulses are combined by a beam combination device and then are connected with a spectrum analyzer; modulation signals from high to low or from low to high changing along with the time delay length are obtained on the spectrum analyzer and are the pulse autocorrelation signals represented in a logarithm format, and by the computer analysis and processing, the width and the contrast of the to-be-measured pulse are finally obtained. According to the present invention, a conventional method of utilizing the non-linear effect of a frequency doubling crystal to measure the autocorrelation signals is avoided, the interference of the noise signals introduced by the non-linear effect is reduced, and not only the width of the pulse can be measured, but also the contrast of the pulse can be distinguished directly, so that the measurement is more accurate, and the error amount is smaller.

Description

technical field [0001] The invention relates to a laser parameter measurement technology, in particular to a high-contrast pulse measurement method and a measurement device. Background technique [0002] In recent years, with the continuous advancement of laser technology, laser pulses are constantly developing in the direction of ultrashort pulse lasers. In the fields of physics, chemistry and biology, using femtosecond pulsed lasers to observe various dynamic processes, various ultrafast phenomena and biological imaging processes has become an important means of research. The accuracy of pulse width measurement will greatly affect the accuracy of various observations, so the precise measurement of pulse width is particularly important. [0003] Based on the current technical means, the current instrument for measuring laser pulse width is mainly autocorrelator. Autocorrelator is compact in structure, easy to use, and has high resolution and sensitivity. It is the main met...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01J11/00
CPCG01J11/00
Inventor 杨康文蒋杰世郝强曾和平
Owner UNIV OF SHANGHAI FOR SCI & TECH
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