Vibronic interactions in Nd:YAG resulting in nonreciprocity of absorption and stimulated emission cross sections
- 1 May 1982
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Journal of Quantum Electronics
- Vol. 18 (5) , 925-930
- https://doi.org/10.1109/jqe.1982.1071611
Abstract
In this paper we discuss the quantum efficiency of the metastable4F_{3/2}state in Nd:YAG. We show that the vibronic interaction disrupts the equality between absorption and emission cross section ("reciprocity") upon which spectroscopic quantum efficiency measurements are based. Even if the electron-lattice coupling is weak, a phonon whose energy matches the energy difference between two electronic states can have a significant effect. Our spectroscopic measurements clearly show nonreciprocity and establish the importance of vibronics in Nd:YAG. The data are consistent with a high quantum efficiency.Keywords
This publication has 13 references indexed in Scilit:
- fluorescence quantum-efficiency measurements with photoacousticsPhysical Review B, 1981
- Laser emission cross section of Nd:YAG at 1064 nmJournal of Applied Physics, 1981
- Einstein coefficients, stimulated emission cross sections, and absolute quantum efficiencies of luminescence from the metastable state4F3/2of Nd3+in laser glasses and garnet crystalsSoviet Journal of Quantum Electronics, 1976
- Top-seeded solution growth of oxide crystals from non-stoichiometric meltsMaterials Research Bulletin, 1971
- Neodymium-Activated Lanthanum Oxysulfide: A New High-Gain Laser MaterialJournal of Applied Physics, 1971
- Radiative transition probabilities within the 4f3ground configuration of Nd:YAGIEEE Journal of Quantum Electronics, 1971
- Optical Phonons of Yttrium Aluminum GarnetPhysical Review B, 1968
- Measurement of the Laser Transition Cross Section forin Yttrium Aluminum GarnetPhysical Review B, 1967
- Vibronic Transitions of Hexagonal Rare-Earth Trichlorides. I. and in NdPhysical Review B, 1967
- Measurement of the Laser Transition Cross Section forin Yttrium Aluminum GarnetPhysical Review B, 1967