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Time-of-Flight Characteristics of a Laser Torch during Ablation of a MnSi Target in Argon Atmosphere


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Abstract

The Langmuir-probe technique has been used to study the time-of-flight characteristics of a laser torch during MnSi-target ablation in vacuum and argon atmosphere by pulsed 532-nm laser radiation at 15-ns pulse duration. It is established that the amplitude of the signal of fast particles in the laser torch nonmonotonically depends on the buffer-gas pressure. Mechanisms determining this dependence of laser-torch characteristics on the pressure are considered. The influence of buffer-gas pressure on the ion-velocity distribution function is determined.

About the authors

O. A. Novodvorsky

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Author for correspondence.
Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

V. A. Mikhalevskii

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

D. S. Gusev

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

A. A. Lotin

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

L. S. Parshina

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

O. D. Khramova

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

E. A. Cherebylo

Institute of Laser and Information Technologies, Branch, Federal Research Center Crystallography and Photonics

Email: onov@mail.ru
Russian Federation, Shatura, Moscow oblast, 140700

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