Streak Tubes for Diagnostics of Lasers and Plasmas
A. Yu. Sokolov, P. I. Konovalov, R I Nurtdinov, M P Vikulin, Ivan G. Pryanishnikov, A. S. Dolotov, P. S. Krapiva
Abstract
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A. Yu. Sokolov, P. I. Konovalov, R I Nurtdinov, M P Vikulin, Ivan G. Pryanishnikov, A. S. Dolotov, P. S. Krapiva
Abstract
Open-access reader
Designing a facility for laser fusion research requires sufficient advancement in diagnostics techniques for lasers and plasmas, including those involving streak camera imaging. Maximum specifications of streak cameras depend on the parameters of streak tubes. The paper illustrates how these devices function, and which of their parameters are limiting. The paper presents a novel technological platform designed at VNIIA, which was used to develop a new generation of streak tubes. Using these streak tubes in streak cameras, the efficiency of streak camera imaging techniques can be improved by several orders of magnitude, and new techniques can be designed.
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Designing a facility for laser fusion research requires sufficient advancement in diagnostics techniques for lasers and plasmas, including those involving streak camera imaging. Maximum specifications of streak cameras depend on the parameters of streak tubes. The paper illustrates how these devices function, and which of their parameters are limiting. The paper presents a novel technological platform designed at VNIIA, which was used to develop a new generation of streak tubes. Using these streak tubes in streak cameras, the efficiency of streak camera imaging techniques can be improved by several orders of magnitude, and new techniques can be designed.
Key concepts: Streak, Streak camera, Laser, Optics, Limiting, Plasma, Plasma diagnostics, Inertial confinement fusion