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Thermal Desorption Behaviors in an Advanced Reduced-Activation Alloy under Helium-Deuterium Sequential Irradiations

机译:氦 - 氘序列照射下的先进降解合金中的热解吸行为

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The desorption behaviors of deuterium and helium gases in an advanced reduced-activation alloy (ARAA) under sequential irradiations with helium and deuterium ions were analyzed using thermal desorption spectroscopy (TDS). At room temperature, ARAA samples were and were not irradiated with helium ions (1.4, 5.0, or 7.0 keV) at a fixed fluence of 5.0x10(21) He/m(2) and were sequentially irradiated with 1.7-keV deuterium ions at a fixed fluence of 6.5x10(21) D/m(2). Immediately after the irradiation, TDS measurements were performed in-situ, without exposure of the sample to air. The amount of desorbed deuterium decreased with increasing energy of the helium ions up to 5.0 keV; however, the amount of desorbed deuterium increased when the energy of the helium ions was increased to 7.0 keV. The amount of desorbed helium gradually increased with increasing energy of the irradiating helium ions.
机译:使用热解吸光谱(TDS)分析了在序贯辐射和氘离子的顺序照射下的氘和氦气中的解吸行为。 在室温下,ARAA样品在5.0×10(21)HE / M(2)的固定电量下没有用氦离子(1.4,5.0,或7.0keV)照射,并用1.7-keV氘离子依次被释放 固定的流量为6.5x10(21)d / m(2)。 在照射后立即进行TDS测量,原位进行,而不会将样品暴露于空气。 解吸的氘的量随着氦离子的升高而降低,氦离子的能量增加到5.0 keV; 然而,当氦离子的能量增加至7.0keV时,解吸的氘的量增加。 随着辐照氦离子的增加,解吸氦的量逐渐增加。

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