H32+molecular ion in a strong magnetic field: Triangular configuration
نویسندگان
چکیده
منابع مشابه
H + 2 ion in strong magnetic field : a variational study
Using a single trial function we perform an accurate calculation of the ground state 1σ g of the hydrogenic molecular ion H + 2 in a constant uniform magnetic field ranging 0−10 13 G. We show that this trial function also makes it possible to study the negative parity ground state 1σ u. We obtain that over the whole range of magnetic fields studied, the calculated binding energies are in most c...
متن کاملH + 2 ion in strong magnetic field : an accurate calculation
Using a unique trial function we perform an accurate calculation of the ground state 1σg of the hydrogenic molecular ion H + 2 in a constant uniform magnetic field ranging 0 − 10 G. We show that this trial function also makes it possible to study the negative parity ground state 1σu. PACS numbers: 31.10.+ z, 32.60.+ i, 97.10.Ld, 31.15.Ar, 97.60.Jd E-mail: [email protected] E-mail: ...
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We present a numerical study of the rotating flow generated by two rotating disks in co-/counter-rotating, inside a fixed cylindrical enclosure similar to the Czochralski configuration (Cz). The enclosure having an aspect ratio A = H/Rc equal to 2, filled with a low Prandtl number fluid (Pr = 0.011), which is submitted to a vertical temperature gradient. The finite volume method has been used ...
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The presence of a strong magnetic eld intrinsically changes the orbit of electrons in their Coulomb interactions with ions for a range of parameters. The characteristic scale for the orbit modi cation is r0 = (Zme=4 0B) where Ze is the ion charge, me the electron mass and B the magnetic eld strength. The scale length is comparable to the interparticle spacing when n 1=3 e r0 = (!pe=!ce) 2=3(Z=4...
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ژورنال
عنوان ژورنال: Physical Review A
سال: 2002
ISSN: 1050-2947,1094-1622
DOI: 10.1103/physreva.66.023409