Search results for "Terbium"

showing 10 items of 150 documents

Terbium Medical Radioisotope Production: Laser Resonance Ionization Scheme Development

2021

Terbium (Tb) is a promising element for the theranostic approach in nuclear medicine. The new CERN-MEDICIS facility aims for production of its medical radioisotopes to support related R&D projects in biomedicine. The use of laser resonance ionization is essential to provide radioisotopic yields of highest quantity and quality, specifically regarding purity. This paper presents the results of preparation and characterization of a suitable two-step laser resonance ionization process for Tb. By resonance excitation via an auto-ionizing level, the high ionization efficiency of 53% was achieved. To simulate realistic production conditions for Tb radioisotopes, the influence of a surplus of Gd at…

Medicine (General)theranosticsMaterials scienceCERN-MEDICISIon beam530 PhysicsGadolinium610 Medizinchemistry.chemical_elementTerbiumTERBIUMSURFACE PROPERTYIsotope separationlaw.inventionGADOLINIUMR5-920COMPARATIVE STUDYlawIonization610 Medical sciencesLASER RESONANCE IONIZATIONSAPPHIRE LASER [TI]ARTICLERADIOCHEMISTRYisotope separationTANTALUMOriginal ResearchTHERANOSTICSTi:Sapphire laserRISIKO MASS SEPARATORterbiumATOMIC SPECTROMETRYRadiochemistryTi:sapphire laserGeneral Medicine530 PhysikCharacterization (materials science)CONTROLLED STUDYchemistryRISIKO mass separatorION CURRENTMedicineISOTOPE SEPARATIONIONIZATIONAtomic ratiolaser resonance ionizationgadolinium
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DOTASQ as a prototype of nature-inspired G-quadruplex ligand

2011

DOTASQ (for DOTA-templated Synthetic G-quartet) is the first prototype of nature-inspired G-quadruplex ligand: its design, founded on a possible intramolecular G-quartet formation, enables it to interact with G-quadruplex DNA via an unprecedented nature-mimicking binding mode, based on the association between two G-quartets, one being native (quadruplex) and the other one artificial (ligand).

Models MolecularGuanineMacrocyclic CompoundsStereochemistryAntineoplastic AgentsLigands010402 general chemistryG-quadruplex01 natural sciencesCatalysischemistry.chemical_compoundMaterials ChemistryHumans[CHIM]Chemical SciencesNature inspiredTerbiumComputingMilieux_MISCELLANEOUSBinding SitesFourier Analysis010405 organic chemistryMetals and AlloysGeneral ChemistryLigand (biochemistry)0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsG-QuadruplexeschemistryMolecular ProbesIntramolecular forceCeramics and CompositesNucleic Acid ConformationHydrophobic and Hydrophilic InteractionsDNA
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Single-molecule magnetic behavior in a neutral terbium(III) complex of a picolinate-based nitronyl nitroxide free radical

2011

The terdentate anionic picolinate-based nitronyl nitroxide (picNN) free radical forms neutral and robust homoleptic complexes with rare earth-metal ions. The nonacoordinated Tb3+ complex Tb(picNN)3• 6H2O is a single-molecule magnet with an activation energy barrier Δ = 22.8 ± 0.5 K and preexponential factor τ0 = (5.5 ± 1.1) × 10-9 s. It shows magnetic hysteresis below 1 K. © 2011 American Chemical Society.

Models MolecularNitroxide mediated radical polymerizationFree RadicalsMolecular Structurechemistry.chemical_elementTerbiumActivation energyPicolinic acidIron Chelating AgentsMagnetic hysteresisPhotochemistryIonInorganic ChemistryMagneticsCrystallographychemistry.chemical_compoundchemistryOrganometallic CompoundsMoleculeNitric Oxide DonorsPhysical and Theoretical ChemistryHomolepticPicolinic AcidsTerbium
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Radiation hardening techniques for rare-earth-based optical fibers and amplifiers

2012

Er/Yb doped fibers and amplifiers have been shown to be very radiation sensitive, limiting their integration in space. We present an approach including successive hardening techniques to enhance their radiation tolerance. The efficiency of our approach is demonstrated by comparing the radiation responses of optical amplifiers made with same lengths of different rare-earth doped fibers and exposed to gamma-rays. Previous studies indicated that such amplifiers suffered significant degradation for doses exceeding 10 krad. Applying our techniques significantly enhances the amplifier radiation resistance, resulting in a very limited degradation up to 50 krad. Our optimization techniques concern …

Optical amplifierOptical fiberMaterials scienceoptical fibersbusiness.industryAmplifierRadiation effects; optical fibers; erbium; ytterbium; amplifierschemistry.chemical_elementRadiation effectsytterbiumRadiationlaw.inventionErbiumerbiumRadiation sensitivitychemistrylawradiation effects optical fibers erbium ytterbium amplifiersOptoelectronicsamplifiersbusinessRadiation hardeningRadiation resistance
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Highly-chirped similaritons generation from a mode-locked fiber laser

2007

In this communication, we report experimental and numerical results on dynamics and propagation of self-similar pulses in a passively mode-locked ytterbium doped DC fiber laser.

Optical amplifierYtterbiumMaterials sciencebusiness.industryPhysics::OpticsPulse amplifierschemistry.chemical_elementUltrafast opticsOpticsRaman amplifierschemistryFiber laserLaser mode lockingChirpPhysics::Atomic Physicsbusiness
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Observation of dark dot splitting pattern in terbium gallium garnet

1999

We have observed a new polarisation pattern in terbium gallium garnet which is both laser excited and mechanically stressed. The pattern can be characterized by a splitting from a “one dot” structure to a “two dots” structure. We have found that the new pattern is very sensitive to the orientation and the strength of the external forces applied to the sample. Thanks to this sensitivity and to the image simplicity, this new effect may be used in a vectorial force sensor and actuator.

Orientation (computer vision)business.industryGeneral ChemistryLaserMolecular physicsForce sensorTerbium gallium garnetlaw.inventionchemistry.chemical_compoundOpticschemistrylawExcited stateGeneral Materials ScienceSensitivity (control systems)ActuatorbusinessApplied Physics A: Materials Science & Processing
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Confirming band assignments in $^{167}$ytterbium with gamma-gamma-electron triple-coincidence spectroscopy

2019

International audience; Multipolarity measurements are presented for transitions in the deformed odd-mass nucleus$^{167}$ Yb in support of tentative spin assignments and level interpretations based upon the cranked-Nilsson model. Internal-conversion coefficients were measured with the SAGE (Silicon And GErmanium) spectrometer confirming several E2 transition assignments. The array of high-purity germanium detectors enabled the recording of high-multiplicity events from which $\gamma\gamma\gamma$ and $\gamma\gamma e^{-}$ data sets were extracted and the technique of high-fold $\gamma$ -ray gating was demonstrated to cleanly isolate transitions of interest.

PhysicsYtterbiumNuclear and High Energy PhysicsSpectrometerSilicon010308 nuclear & particles physicsAstrophysics::High Energy Astrophysical PhenomenaHadronchemistry.chemical_elementGermaniumElectron[PHYS.NEXP]Physics [physics]/Nuclear Experiment [nucl-ex]01 natural scienceschemistry0103 physical sciences[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Atomic physics010306 general physicsSpectroscopySpin (physics)Nuclear Experiment
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Luminescence properties of Tb3+:Y3Al5O12 nanocrystallites prepared by the sol–gel method

2004

Tb 3+ :YAG nanocrystalline powders have been prepared by the sol-gel route. Structure and morphology of the obtained materials have been studied. The average grain sizes have been determined by X-ray powder diffraction measurements. Photo- and cathodoluminescence spectra of the Tb 3+ :Y 3 Al 5 O 12 powders have been measured. It has been found that the samples at low concentration demonstrate emission ascribable to the 5 D 3 →F J and 5 D 4 → 7 F J transitions. In particular, the concentration dependence of the luminescence spectra and lifetimes have been investigated as a function of the YAG grains sizes. It has been shown that the cross-relaxation responsible for the quenching of the 5 D 3…

QuenchingMaterials sciencePhotoluminescenceOrganic ChemistryAnalytical chemistrychemistry.chemical_elementMineralogyTerbiumCathodoluminescenceAtomic and Molecular Physics and OpticsNanocrystalline materialGrain sizeElectronic Optical and Magnetic MaterialsInorganic ChemistrychemistryElectrical and Electronic EngineeringPhysical and Theoretical ChemistryLuminescenceSpectroscopyPowder diffractionOptical Materials
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Design of Radiation-Hardened Rare-Earth Doped Amplifiers through a Coupled Experiment/Simulation Approach

2013

International audience; We present an approach coupling a limited experimental number of tests with numerical simulations regarding the design of radiation-hardened (RH) rare earth (RE)-doped fiber amplifiers. Radiation tests are done on RE-doped fiber samples in order to measure and assess the values of the principal input parameters requested by the simulation tool based on particle swarm optimization (PSO) approach. The proposed simulation procedure is validated by comparing the calculation results with the measured degradations of two amplifiers made with standard and RH RE-doped optical fibers, respectively. After validation, the numerical code is used to theoretically investigate the …

Rare-Earth ionsOptical fiberMaterials scienceoptical fiberschemistry.chemical_elementlaw.inventionErbiumlawElectronic engineeringSensitivity (control systems)FiberYtterbiumrare-earth ionsOptical FibersCouplingparticle swarm optimizationAmplifierOptique / photoniqueParticle swarm optimizationytterbiumAtomic and Molecular Physics and OpticsAmplifiers erbium optical fibers particle swarm optimization radiation effects rare-earth ions ytterbiumAmplifiersRadiation EffectserbiumchemistryParticle Swarm Optimizationoptical fiber Rare-earth ions optical amplifier radiation induced absortpion Particle swarm optimization[SPI.OPTI]Engineering Sciences [physics]/Optics / Photonicradiation effectsErbiumSpace environment
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CCDC 2036265: Experimental Crystal Structure Determination

2020

Related Article: Tanmoy Kumar Ghosh, Souvik Maity, Júlia Mayans, Ashutosh Ghosh|2021|Inorg.Chem.|60|438|doi:10.1021/acs.inorgchem.0c03129

Space GroupCrystallography(mu-nitrato)-(mu-2-({[1-({[2-(oxy)phenyl]methylidene}amino)propan-2-yl]imino}methyl)-6-(methoxy)phenolato)-aqua-bis(nitrato)-copper-terbium acetonitrile solvateCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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