94 research outputs found
Analysis of refill curve shape in ultrasound contrast agent studies
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/135021/1/mp9534.pd
Microwave-Induced Combustion Synthesis of Luminescent Aluminate Powders
ISBN 978-953-51-0371-4 Chapitre
Synthesis of Y3Al5O12:Eu and Y3Al5O12:Eu,Si phosphors by combustion method: Comparative investigations on the structural and spectral properties
Nanocrystalline lanthanide-doped Lu3Ga5O12 garnets: interesting materials for light-emitting devices
Nanocrystalline Lu3Ga5O12, with average particle sizes of 40 nm, doped with a wide variety of luminescent trivalent lanthanide ions have been prepared using a sol\u2013gel technique. The structural and morphological properties of the powders have been investigated by x-ray powder diffraction, high resolution transmission electron microscopy and Raman spectroscopy. Structural data have been refined and are presented for Pr3+, Eu3+, Gd3+, Ho3+, Er3+ and Tm3+ dopants, while room temperature excited luminescence spectra and emission decay curves of Eu3+-, Tm3+- and Ho3+-doped Lu3Ga5O12 nanocrystals have been measured and are discussed.
The Eu3+ emission spectrum shows typical bands due to 5D0 \u21927FJ (J = 0, 1, 2, 3, 4) transitions and the broadening of these emission bands with the non-exponential behaviour of the decay curves indicates the presence of structural disorder around the lanthanide ions.
Lanthanide-doped nanocrystalline Lu3Ga5O12 materials show better luminescence intensities compared to Y2O3, Gd3Ga5O12 and Y3Al5O12 nanocrystalline hosts. Moreover, the upconversion emission intensity in the blue-green region for the Tm3+- and Ho3+-doped samples shows a significant increase upon 647.5 nm excitation with respect to other common oxide hosts doped with the same lanthanide ions
Interim report for the International Muon Collider Collaboration (IMCC)
The International Muon Collider Collaboration (IMCC) [1] was established in
2020 following the recommendations of the European Strategy for Particle
Physics (ESPP) and the implementation of the European Strategy for Particle
Physics-Accelerator R&D Roadmap by the Laboratory Directors Group [2],
hereinafter referred to as the the European LDG roadmap. The Muon Collider
Study (MuC) covers the accelerator complex, detectors and physics for a future
muon collider. In 2023, European Commission support was obtained for a design
study of a muon collider (MuCol) [3]. This project started on 1st March 2023,
with work-packages aligned with the overall muon collider studies. In
preparation of and during the 2021-22 U.S. Snowmass process, the muon collider
project parameters, technical studies and physics performance studies were
performed and presented in great detail. Recently, the P5 panel [4] in the U.S.
recommended a muon collider R&D, proposed to join the IMCC and envisages that
the U.S. should prepare to host a muon collider, calling this their "muon
shot". In the past, the U.S. Muon Accelerator Programme (MAP) [5] has been
instrumental in studies of concepts and technologies for a muon collider.Comment: This document summarises the International Muon Collider
Collaboration (IMCC) progress and status of the Muon Collider R&D programm
Routine Thyroid Lobectomy for Thyroid Nodules on the Same Side of a Localized Parathyroid Adenoma During Directed Parathyroidectomy May Reduce Reoperative Thyroid Surgery
Synthesis of GdBO3:Eu3+ nanophosphors via acetylacetone assisted aqueous sol–gel route: Effect of some synthesis parameters
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