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Journal ArticleDOI

Growth, spectroscopic and laser properties of crystals in the K5Bi1−xNdx(MoO4)4 system

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TLDR
In this article, complex spectral and laser properties are studied for crystals of the K5Bi1−xNdx(MoO4)4 system, in the whole concentration region of x = 0 to 1.
Abstract
Complex spectral and laser properties are studied for crystals of the K5Bi1−xNdx(MoO4)4 system, grown by the Czochralski technique, in the whole concentration region of x = 0 to 1. By the analysis of absorption and luminescence spectra the crystal field splitting scheme of the lowest 4F3/2 and 4I9/2−15/2 manifolds and their Stark components are established. Weak concentration quenching of luminescence is observed. The luminescence lifetime of the metastable 4F3/2 state, the luminescence linewidth, probability, and cross-section of the most intensive transition are determined. From the radiative decay time of the 4F3/2 metastable state of dilute crystals (low x) and the transition probability of the resonance channel 4I9/2 4I3/2 x = 1, the parameter of spectroscopic quality X is calculated. Using X, intermanifold luminescence bracnching ratios are determined. Stimulated emission of K5Bi1−xNdx(MoO4)4 crystals with x = 0.1 is excited in the pulse regime, using optical broad-band pumping by Xe flash-tube, and of “self-activated” crystals with x = 1, using laser excitation by a Raman laser, operating at λ = 0.745 and 0.805 μm. [Russian text Ignored.]

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Citations
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Book ChapterDOI

Chapter 155 Rationalization of crystal-field parametrization

TL;DR: In this article, the symmetry aspects of the crystal field and the parametrization of the energy level scheme are discussed and the determination of phenomenological crystal-field parameters is described.
Journal ArticleDOI

Growth and Optical Properties of Li13Nd(GeO4)4 Single Crystal

TL;DR: In this paper, single crystals of Li13Nd(GeO4)4 were grown by the Czochralski method and the unit cell dimensions and the crystal system were determined by an X-ray diffraction method.
Book ChapterDOI

Energy transfer in concentrated systems

TL;DR: In this paper, a theoretical description of energy transfer in solids is given, and the importance of separating the migration process and the trapping process is stressed, as well as the influence of dimensionality on energy migration.
Journal ArticleDOI

Solid state lasers

TL;DR: In this article, the authors present an energy level diagram of laser oscillators and their relationship to the active medium of a laser system and the mode-locked laser oscillator, as well as the self-saturated and Q-switched lasers.
Journal ArticleDOI

Spectroscopic properties of new Yb3+-doped K5Bi(MoO4)4 crystals

TL;DR: In this paper, the authors analyzed the spectroscopic properties of Yb 3+ ion in a new oxide single crystal belonging to the potassium bismuth molybdate family with the following concentrations: K 5 Bi 1-x -Yb x (Mo 0 4 ) 4 (x = 0.005, 0.05,0.15).
References
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Journal ArticleDOI

Crystal structure and fluorescence lifetime of NdAl3(BO3)4, a promising laser material☆

TL;DR: The structure of NdAl3(BO3)4, determined by single-crystal x-ray analysis, is rhombohedral with space group R32 and cell parameters a = 9.3416, c = 7.3066, Z = 3.033, and Rw = 0.037 as discussed by the authors.
Journal ArticleDOI

Nd‐ultraphosphate laser

TL;DR: In this article, a 35-μm-thick platelet of a neodymium-ultraphosphate crystal (NdUP) placed within an optical resonator was used to demonstrate laser action at λ=1.051 μm with a bandwidth of 1.4 nm.
Journal ArticleDOI

Crystal structure of NdLiP4O12

TL;DR: A single-crystal x-ray diffraction analysis has been performed on NdLiP4O12 synthesized by a flux method as discussed by the authors, and the structure is monoclinic, with space group C 2/c, Z = 4, and cell parameters a = 16408 (3), b = 7035 (4), c = 9729 (4) A, and β = 12638 (5)° A fullmatrix, least squares refinement gave R = 0072, Rw = 0077 for 590 independent reflections
Journal ArticleDOI

Spectroscopic properties and stimulated emission in the4F3/2 →4I11/2 and4F3/2 →4I13/2 transitions of Nd3+ ions from cubic Bi4Ge3O12 crystals

TL;DR: In this paper, detailed complex investigations of the spectral and physical characteristics for cubic Bi4Ge3O12−Nd3+ crystals were made An analysis of absorption, luminescence, and stimulated emission spectra for 4F3/2 4I11/2 and 4F 3/24I13/2 transitions were carried out.
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