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Lattice structures and optical properties of Ce:LYSO crystal waveguides with implanted C, Si and Cu ions

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TLDR
In this paper, the lattice structures and optical properties of C, Si and Cu-ion implantation were investigated in the Ce:LYSO crystal waveguides at 6.5 MeV and XRD and Raman spectra were used to study the optical properties.
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This article is published in Journal of Luminescence.The article was published on 2022-02-01. It has received 5 citations till now. The article focuses on the topics: Ion & Photoluminescence.

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Citations
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Properties of the natural MoS2 crystal irradiated by medium- and high-energy Ni ions

TL;DR: In this article , the authors used the Stopping and Range of Ions in Matter software packages to simulate the Ni-ion beam peneration through the natural MoS2 single crystal.
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Optical properties of He+-implanted and diamond blade-diced terbium gallium garnet crystal planar and ridge waveguides

TL;DR: In this paper , a diamond blade-dicing with a rotation speed of 2 × 104 rpm and a cutting velocity of 0.1 mm/s was performed on the He+-implanted TGG planar waveguide for the ridge structure.
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Optical properties of the He+-implanted and diamond blade-diced TGG crystal planar and ridge waveguides

TL;DR: In this paper , He+-implanted and diamond blade-diced TGG crystal planar and ridge waveguides are shown promising candidates for integrated magneto-optical devices.
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Optical properties investigation on Er3+ ion-doped tellurite glass by hydrogen and oxygen ion implantation

TL;DR: In this paper , a planar optical waveguide was formed in Er3+-doped tellurite glasses by using a confocal microscope with a fiber-coupled system.
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Optical properties and thermal stability of the H+-implanted Dy3+/Tm3+-codoped GeS2–Ga2S3–PbI2 chalcohalide glass waveguide

TL;DR: In this article , the authors reported on the preparation and characterization of planar waveguides in the Dy3+/Tm3+-codoped GeS2-Ga2S3-PbI2 chalcohalide glass.
References
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Journal ArticleDOI

Radiation Detector Materials: An Overview

TL;DR: The state-of-the-art and limitations for each of these materials classes are presented, along with possible avenues of research as discussed by the authors, with particular emphasis on national security needs and the goal of identifying the challenges and opportunities that this area represents for the materials science community.
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Crystal growth and optical characterization of cerium-doped Lu1.8Y0.2SiO5

TL;DR: Czochralski growth of cerium-doped Lu 1.8Y 0.2SiO5 (LYSO) from a 90/10 solution of Lu 2SiO 5 (LSO) and Y 2Si O 5 (YSO) is demonstrated in this paper.
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Achieving Thermo-Mechano-Opto-Responsive Bitemporal Colorful Luminescence via Multiplexing of Dual Lanthanides in Piezoelectric Particles and its Multidimensional Anticounterfeiting.

TL;DR: For the first time, the superior integration of colorful, bitemporal, and four-modal emissions in a particular piezoelectric particle via optical multiplexing of dual-lanthanide dopants is demonstrated.
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Trap-controlled mechanoluminescent materials

TL;DR: A recent review of trap-controlled mechanoluminescence (ML) composites can be found in this paper, focusing on the design, synthesis, characterization, optimization and application of trap controlled ML materials.
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Structural characterization of Lu{sub 1.8}Y{sub 0.2}SiO{sub 5} crystals

TL;DR: In this paper, the structural and vibrational properties of Lu{sub 1.8}Y{sub 0.2}SiO{sub 5} (LYSO) single crystals were investigated by means of Raman spectroscopy and x-ray diffraction measurements.
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