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- W2013063500 abstract "The magnetization of ruby in a magnetic field at 300ifmmode^circelsetextdegreefi{}K is changed when the ruby is optically pumped with linearly polarized radiation from a $Q$-switched ruby laser. With a magnetic field parallel to the trigonal axis, laser light polarized parallel to this axis induces transitions from the spin ifmmodepmelsetextpmfi{}textonehalf{} levels of the $^{4}A_{2}$ ground state to the levels of the $overline{E}(^{2}E)$ excited state. The change in ${M}_{z}$ is linearly proportional to $H$ except near the anticrossing points of the $^{4}A_{2}$ spin levels at 2.07 and 4.14 kG. At these field strengths, there is an enhancement of the magnetization caused by state mixing of the $^{4}A_{2}$ wave functions. When $H$ has a small component perpendicular to the $z$ axis, a magnetization is detected parallel to this component in the vicinity of 4.14 kG. The effect requires a long ground-state relaxation time. In a separate experiment, the relaxation of ${M}_{z}$ was found to vary from 0.13 ensuremath{mu}sec in zero magnetic field to a constant value of 0.57 ensuremath{mu}sec for fields above 60 G." @default.
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- W2013063500 date "1965-05-17" @default.
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- W2013063500 title "Optically Induced Magnetization in Ruby" @default.
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- W2013063500 doi "https://doi.org/10.1103/physrev.138.a1287" @default.
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