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ro o CL

ro o CL

(c) 1 0 0. 0.

Figure 40. Polarizability tensor components versus major semiaxis of the spheroidal box. Polarizability units, Bohr3; distance units, Bohr. (a) R = 0.1, (b) R = 0.5, and (c) R = 1.0. Reprinted with permission from [205], J. L. Marin et al., in "Handbook of Advanced Electronic and Photonic Materials and Devices" (H. S. Nalwa, Ed.). Academic Press, San Diego, 2001. © 2001, Academic Press.

Figure 40. Polarizability tensor components versus major semiaxis of the spheroidal box. Polarizability units, Bohr3; distance units, Bohr. (a) R = 0.1, (b) R = 0.5, and (c) R = 1.0. Reprinted with permission from [205], J. L. Marin et al., in "Handbook of Advanced Electronic and Photonic Materials and Devices" (H. S. Nalwa, Ed.). Academic Press, San Diego, 2001. © 2001, Academic Press.

R = 0.1, 0.5, and 1.0 Bohr, while Figure 41 shows the electric dipole moment as a function of R£0 (for the same R values given previously). Figure 42 shows the electric quadrupole moment as a function of R£0 for the same values of .

As can be seen in Figure 38, the qualitative behavior for confined helium atom is that the energy increases from

0 0

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