High-accuracy calculation of muonic molecules using random-tempered basis sets.

High-accuracy calculation of muonic molecules using random-tempered basis sets.
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使用随机调节基组对μ子分子进行高精度计算。

DOI:
10.1103/physreva.38.26
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发表时间:
1988
期刊:
Physical review. A, General physics
影响因子:
--
通讯作者:
Monkhorst
Monkhorst
中科院分区:
--
文献类型:
--
作者:
Alexander;Monkhorst

文献摘要

被引文献

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我们使用随机回火公式和显式关联Slater型孪子来计算μ子分子xy\ensuremath{\mu}的S和P束缚态能量,其中x,y=p,d,t。最终的结合能精确到大约1 \ensuremath{\mu}eV或更好,除了弱结合的td\ensuremath{\mu}(11)状态。对于这种状态,我们得到的结合能为0.660 - 1721 eV,这是优于任何以前的计算。
We use random-tempering formulas and explicitly correlated Slater-type geminals to calculate the S and P bound-state energies of the muonic molecules xy\ensuremath{\mu}, where x,y=p,d,t. The final binding energies are accurate to about 1 \ensuremath{\mu}eV or better except for the weakly bound td\ensuremath{\mu}(11) state. For this state we get a binding energy of 0.660 1721 eV, which is better than any previous calculation.