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- W1981148296 abstract "A theoretical study is made of the lattice stability or theoretical strength of thorium subjected to various kinds of simple stresses. Calculations are carried out with the use of generalized Morse potential and the stability criterion of Born. The region of $G$, $M$, and $S$ stability of thorium in the ${a}_{2}={a}_{3}$ plane of the ${a}_{1}$, ${a}_{2}$, ${a}_{3}$ space is investigated. Many simple cases of lattice deformation arise as specific cases of the generalized calculations presented here. A wealth of data for various elastic moduli, internal energy, and stresses throughout a wide range of lattice deformation is presented. This study indicates the presence of a stress-free bcc phase of thorium, which has a cell length of 4.04 AA{}, in close agreement with the experimental observation. We have found two internal-energy minima corresponding to the stress-free fcc and bcc phases. The path of phase transformation (fccensuremath{rightarrow}bcc) in thorium is predicted on the basis of the present study." @default.
- W1981148296 created "2016-06-24" @default.
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- W1981148296 date "1982-09-15" @default.
- W1981148296 modified "2023-10-18" @default.
- W1981148296 title "Theoretical stability of a perfect thorium crystal subjected to multidirectional stresses" @default.
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- W1981148296 doi "https://doi.org/10.1103/physrevb.26.3001" @default.
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