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首页> 外文期刊>Russian physics journal >Plasma Radiation Source on the Basis of the Gas Puff with Outer Plasma Shell in the Circuit of a Mega-Ampere Load Current Doubler
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Plasma Radiation Source on the Basis of the Gas Puff with Outer Plasma Shell in the Circuit of a Mega-Ampere Load Current Doubler

机译:等离子体辐射源基于气体粉扑,在巨型载荷电流倍增器的电路中具有外部等离子壳

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摘要

Characteristics of Z-pinch plasma radiation in the form of a double shell neon gas puff with outer plasma shell are investigated in the microsecond implosion mode. Experiments are performed using a GIT-12 mega-joule generator with load current doubler having a ferromagnetic core at implosion currents up to 5 MA. Conditions for matching of the nonlinear load with the mega-ampere current multiplier circuit are determined. The load parameters (plasma shell characteristics and mass and geometry of gas puff shells) are optimized on the energy supplied to the gas puff and n energy characteristics of radiation. It is established that the best modes of K-shell radiation in neon are realized for such radial distribution of the gas-puff material at which the compression velocity of the shell is close to a constant and amounts to 27-30 cm/mu s. In these modes, up to 40% of energy supplied to the gas puff is converted into K-shell radiation. The reasons limiting the efficiency of the radiation source with increasing implosion current are analyzed. A modernized version of the energy supply from the current doubler to the Z-pinch is proposed.
机译:在微秒内爆模上研究了双壳体氖气粉末的Z-PINCH等离子体辐射的特性。使用具有负载电流倍增器的Git-12兆焦耳发电机进行实验,该载荷电流倍增器在爆炸电流下具有最高可达5 mA的铁磁芯。确定了与Mega-Ampere电流乘法器电路匹配的条件。负载参数(汽油壳壳的等离子壳特性和质量和几何形状)在供应到气体粉扑的能量和辐射的N能量特征上进行了优化。建立氖氖辐射中最好的k壳辐射模式,用于这种壳体的压缩速度靠近恒定的气体浮气材料的径向分布,并且量为27-30cm / mu s。在这些模式中,高达40%的供应到气体粉扑的能量被转化为k-壳辐射。分析了限制辐射源效率随着空肠电流的效率的原因。提出了一种从电流倍增器到Z-PINCH的能量供应的现代化版本。

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