TY - JOUR
T1 - Refractive Index Measurements of Solid Hydrogen Isotopologues
AU - Zhang, Jiaqi
AU - Iwamoto, Akifumi
AU - Shigemori, Keisuke
AU - Hara, Masanori
AU - Yamanoi, Kohei
N1 - Publisher Copyright:
© 2023 American Nuclear Society.
PY - 2024
Y1 - 2024
N2 - Fuel pellets made of a solid deuterium-tritium (D-T) mixture are supplied for inertial confinement fusion. Characterization of the D-T mixture is fundamental for the design and production of high-quality fuel pellets. However, during the phase transition, isotopologue fractionation may lead to fractional crystallization in the solid phase of the hydrogen isotopologue mixture. If this phenomenon occurs in solid D-T fuel, it will reduce the reaction efficiency of nuclear fusion. Currently, there is no effective observation method for fractional crystallization. This study aims to quantify the degree of fractional crystallization of the hydrogen isotopologues mixture in the solid phase using the refractive index measurement. For this method, refractive index information on the hydrogen isotopologues is necessary, therefore the temperature and wavelength dependences of the refractive index of hydrogen isotopologues need to be measured. Then, using the refractive index distribution of the solid D-T will show the composition distribution of isotopologues for assessing the fractional crystallization. Particularly, as far as we know, this is the first time that the measured values of the refractive index versus wavelength of solid D2 have been obtained. Understanding the wavelength dependence of the refractive index for the dispersion compensation allows for a wider application of the fractionated crystallographic observation method.
AB - Fuel pellets made of a solid deuterium-tritium (D-T) mixture are supplied for inertial confinement fusion. Characterization of the D-T mixture is fundamental for the design and production of high-quality fuel pellets. However, during the phase transition, isotopologue fractionation may lead to fractional crystallization in the solid phase of the hydrogen isotopologue mixture. If this phenomenon occurs in solid D-T fuel, it will reduce the reaction efficiency of nuclear fusion. Currently, there is no effective observation method for fractional crystallization. This study aims to quantify the degree of fractional crystallization of the hydrogen isotopologues mixture in the solid phase using the refractive index measurement. For this method, refractive index information on the hydrogen isotopologues is necessary, therefore the temperature and wavelength dependences of the refractive index of hydrogen isotopologues need to be measured. Then, using the refractive index distribution of the solid D-T will show the composition distribution of isotopologues for assessing the fractional crystallization. Particularly, as far as we know, this is the first time that the measured values of the refractive index versus wavelength of solid D2 have been obtained. Understanding the wavelength dependence of the refractive index for the dispersion compensation allows for a wider application of the fractionated crystallographic observation method.
KW - Tritium
KW - fractional crystallization
KW - fusion fuel
KW - hydrogen isotopologue
KW - refractive index
UR - http://www.scopus.com/inward/record.url?scp=85159703961&partnerID=8YFLogxK
U2 - 10.1080/15361055.2023.2197810
DO - 10.1080/15361055.2023.2197810
M3 - 学術論文
AN - SCOPUS:85159703961
SN - 1536-1055
VL - 80
SP - 550
EP - 557
JO - Fusion Science and Technology
JF - Fusion Science and Technology
IS - 3-4
ER -