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Nuclear fusion in plasma produced at the irradiation of TiD2 films by a super-intense laser pulse

V P Krainov2003年Plasma Physics and Controlled FusionIF 2.2出版社

The neutron yield produced by D(d,n)3He fusion reactions in plasma skin layer has been derived from interaction of a high-intensity picosecond laser with thin TiD2 films. Multiple ionization of Ti atoms is considered at the leading edge of the laser pulse. Heating of free electrons is produced by inverse induced bremsstrahlung at the elastic scattering of electrons on multicharged Ti atomic ions. The electron temperature is derived. It is of the order of 10 keV at the peak laser intensity of 5×1018 W cm−2. The neutron yield is equal to ∼104 per laser pulse. This is in qualitative agreement with the known experimental data.

日本語訳

プラズマ表皮層におけるD(d,n)3He核融合反応による中性子収量は、高強度ピコ秒レーザーと薄いTiD2膜との相互作用から導出された。Ti原子の多重電離は、レーザーパルスの立ち上がり部分で考慮される。自由電子の加熱は、多価Ti原子イオン上での電子の弾性散乱における逆制動放射によって生じる。電子温度が導出される。その値は、5×10¹⁸ W cm⁻²のピークレーザー強度において約10 keVのオーダーである。中性子収量は、レーザーパルスあたり約10⁴である。これは、既知の実験データと定性的に一致する。

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