1989
DOI: 10.1103/physrevb.39.8807
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Optical-absorption and photoionization measurements from the excited states ofCe3+:Y3

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Cited by 146 publications
(81 citation statements)
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“…This band is attributed to the second dipole and spin allowed 4f 8 → 4f 7 5d excitation in Tb 3+ that is known to be located at 228 nm. 31 The transition ends at the so-called low-spin [ 32 The 5d 1 excitation of Ce 3+ occurs at 457 nm, but it is not present as a band in the TLES. We conclude that the 5d 3 and 5d 4 levels are definitely inside the CB, and the 5d 2 level is either within or very close below the bottom of the CB.…”
Section: Location Of the Ln 3+ Ground State Levelsmentioning
confidence: 99%
“…This band is attributed to the second dipole and spin allowed 4f 8 → 4f 7 5d excitation in Tb 3+ that is known to be located at 228 nm. 31 The transition ends at the so-called low-spin [ 32 The 5d 1 excitation of Ce 3+ occurs at 457 nm, but it is not present as a band in the TLES. We conclude that the 5d 3 and 5d 4 levels are definitely inside the CB, and the 5d 2 level is either within or very close below the bottom of the CB.…”
Section: Location Of the Ln 3+ Ground State Levelsmentioning
confidence: 99%
“…In the case of Y3Al5O12(YAG), where the Ce3+ ions occupy the Y3± sites of D2 symmetry the covalency effect reduces the 4f -5d separation energy to 35000 cm -1 . The splitting of the d fivefold degenerated state results in the structured absorption [1] with well-separated peaks at 450 nm, 340 nm, 270 nm and 225 nm, related to spin allowed transitions originated from the 2F512 ground state. The broad band (also parity allowed) transitions from the lowest d term to the 2F712-2F5 1 2 splitted ground electronic manifold results in the green yellow double band emission.…”
Section: Introductionmentioning
confidence: 99%
“…concentrations, it is possible to observe the 5d ? 4f emission bands separated into two distinct peaks [21].…”
Section: Resultsmentioning
confidence: 99%