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- W2005653671 abstract "Stimulated-photon-echo measurements as a function of both the first-to-second (ensuremath{tau}) and the second-to-third (T) pulse separations were conducted to study the echo-modulation behavior for the $^{3}$${mathit{H}}_{4}$${mathrm{ensuremath{-}}}^{1}$${mathit{D}}_{2}$ transition of a cryogenic ${mathrm{Pr}}^{3+}$:${mathrm{YAlO}}_{3}$ sample. When T is shorter than the excited-state lifetime ${mathit{T}}_{1}$, deep echo modulations along both the ensuremath{tau} and T axes are observed, the frequencies of which correspond to the excited-state sublevel splittings. When T exceeds ${mathit{T}}_{1}$, the modulation is still observed, although only along the ensuremath{tau} axis. A density-matrix theory is developed in a perturbative manner to explain these coherent dynamical properties. The numerically simulated three-dimensional plots of the echo intensity versus ensuremath{tau} and T are presented, predicting quite satisfactorily the seemingly complicated experimental modulation patterns." @default.
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- W2005653671 date "1992-06-01" @default.
- W2005653671 modified "2023-10-17" @default.
- W2005653671 title "Stimulated-photon-echo spectroscopy. II. Echo modulation inPr3+:YAlO3" @default.
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- W2005653671 doi "https://doi.org/10.1103/physrevb.45.12760" @default.
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