0000000001237348

AUTHOR

F. Marin

showing 15 related works from this author

Electrical and optical low frequency noises in multimodal vertical cavity surface emitting lasers

2006

Experimental investigations of the low frequency noise of multimode 780 nm vertical cavity surface emitting lasers are reported. Electrical noise, optical noise and their correlation have been measured in the frequency range 1 Hz–95 kHz. The results show that the main contribution to the electrical noise is located in the distributed Bragg reflector layers of the laser. The optical power and pump current noise sources are strongly correlated below and around the threshold, while are weakly correlated above threshold. It is argued that the noise in the optical power is due to both free injection carrier noise and optical gain fluctuations.

Materials scienceMulti-mode optical fiberPhysics and Astronomy (miscellaneous)business.industryRelative intensity noiseShot noisePhysics::OpticsOptical powerlow frequency noiseDistributed Bragg reflectorNoise (electronics)VCSELOpticsNoise generatorOptoelectronicsFlicker noisebusinessInstrumentationcoherence function
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Lifetime measurements of the 3D3/2 and 3D5/2 metastable states in CaII

1993

The lifetime of the metastable 3D3/2 and 3D5/2 states of Ca+ ions is determined in a r.f. ion trap by laser excitation of this levels and subsequent time delayed probing of the state population by a second laser. In a buffer gas atmosphere of about 10−5−10−6 mbar of He we observe quenching to the ground state and strong finestructure mixing of the two D-states. This mixing allowes only the determination of the combined lifetime. Our result of τ(3D)=1.24(39) s is in good agreement with theoretical calculations.

education.field_of_studyMaterials scienceBuffer gasPopulationLaserAtomic and Molecular Physics and OpticsIonlaw.inventionlawExcited stateMetastabilityIon trapAtomic physicsGround stateeducationZeitschrift f�r Physik D Atoms, Molecules and Clusters
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Impact of clinical phenotypes on management and outcomes in European atrial fibrillation patients: a report from the ESC-EHRA EURObservational Resear…

2021

Abstract Background Epidemiological studies in atrial fibrillation (AF) illustrate that clinical complexity increase the risk of major adverse outcomes. We aimed to describe European AF patients’ clinical phenotypes and analyse the differential clinical course. Methods We performed a hierarchical cluster analysis based on Ward’s Method and Squared Euclidean Distance using 22 clinical binary variables, identifying the optimal number of clusters. We investigated differences in clinical management, use of healthcare resources and outcomes in a cohort of European AF patients from a Europe-wide observational registry. Results A total of 9363 were available for this analysis. We identified three …

RegistrieResearch Reportmedicine.medical_specialtyMajor adverse outcomeCardiovascular risk factorsCluster analysisRisk FactorsInternal medicineClinical phenotypeAtrial FibrillationEpidemiologyHumansMedicineRegistriesCluster analysiAtrial fibrillation; Clinical management; Clinical phenotypes; Cluster analysis; Major adverse outcomes; Humans; Phenotype; Registries; Research Report; Risk Factors; Atrial FibrillationClinical managementbusiness.industryProportional hazards modelRisk FactorHazard ratioRAtrial fibrillationClinical phenotypesMajor adverse outcomesGeneral Medicinemedicine.diseaseAtrial fibrillationConfidence intervalPhenotypeCohortMedicineObservational studybusinessResearch ArticleHumanBMC Medicine
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XIPE: the x-ray imaging polarimetry explorer

2016

XIPE, the X-ray Imaging Polarimetry Explorer, is a mission dedicated to X-ray Astronomy. At the time of writing XIPE is in a competitive phase A as fourth medium size mission of ESA (M4). It promises to reopen the polarimetry window in high energy Astrophysics after more than 4 decades thanks to a detector that efficiently exploits the photoelectric effect and to X-ray optics with large effective area. XIPE uniqueness is time-spectrally-spatially- resolved X-ray polarimetry as a breakthrough in high energy astrophysics and fundamental physics. Indeed the payload consists of three Gas Pixel Detectors at the focus of three X-ray optics with a total effective area larger than one XMM mirror bu…

X-ray AstronomyHigh-energy astronomyPolarimetryX-ray opticsX-ray telescopeCondensed Matter Physic01 natural sciencesObservatory0103 physical sciencesPolarimetryElectronicOptical and Magnetic MaterialsSpectral resolutionElectrical and Electronic Engineering010303 astronomy & astrophysicsGas Pixel DetectorPhysicsX-ray astronomyta115X-ray optics010308 nuclear & particles physicsElectronic Optical and Magnetic MaterialApplied MathematicsVegaAstronomyComputer Science Applications1707 Computer Vision and Pattern RecognitionGas Pixel Detector; Polarimetry; X-ray Astronomy; X-ray opticsCondensed Matter PhysicsComputer Science ApplicationsApplied MathematicGas Pixel Detector; Polarimetry; X-ray Astronomy; X-ray optics; Electronic Optical and Magnetic Materials; Condensed Matter Physics; Computer Science Applications1707 Computer Vision and Pattern Recognition; Applied Mathematics; Electrical and Electronic EngineeringGas Pixel Detector; Polarimetry; X-ray Astronomy; X-ray optics; Electronic Optical and Magnetic Materials; Condensed Matter Physics; Computer Science Applications; Computer Vision and Pattern Recognition; Applied Mathematics; Electrical and Electronic EngineeringComputer Vision and Pattern RecognitionX-ray optic
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Biochemical characteristics of the soluble organic matrix from the shell of three recent terebratulid brachiopod species.

2008

7 pages; International audience; To build their shells, brachiopods secrete a mixture of proteins and polysaccharides, collectively called the organic matrix. This matrix mediates the calcification process by allowing crystal nucleation followed by elongation and finally by stopping the crystal growth. Ultimately, the matrix controls the different microstructures formed. Brachiopod shells are composites with both organic and inorganic constituents intimately associated. This work represents an attempt to characterize the matrices using two combined approaches: (1) scanning electron microscopy for localization within the shell, (2) analysing extracted matrices at the molecular level to deter…

low magnesium calcitesoluble organic matrixBrachiopodscalcium-binding[ SDV.IB.BIO ] Life Sciences [q-bio]/Bioengineering/Biomaterials[SDV.IB.BIO] Life Sciences [q-bio]/Bioengineering/BiomaterialselectrophoresisBiomineralsorganic sheath[SDV.IB.BIO]Life Sciences [q-bio]/Bioengineering/BiomaterialsproteindiagenesisgranulesRhynchonelliformea
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Coherence functions of the electrical and the optical noises in monomodal packaged vertical cavity surface emitting lasers

2006

Calculations of the frequency noise spectra and of the coherence functions between the electrical and the optical noises for a single-mode packaged vertical surface emitting laser (VCSEL) are reported.A rate-equation model for an index guided VCSEL is used, implemented with the electrical noise model including the intrinsic device, the package and external bias network.The extended model works up to the laser relaxation frequency. The amplitude optical noise and its correlation with the frequency and electrical noises are also analysed. The influence on the calculated quantities of some electrical and laser parameters is evaluated. The results show that generally the frequency noise is corr…

PhysicsPhysics and Astronomy (miscellaneous)business.industryPhysics::Opticsfrequency noiseLaservertical-cavity surface-emitting lasers (VCSELs)Spectral lineVertical-cavity surface-emitting laserlaw.inventionOpticsAmplitudeExtended modellawOptoelectronicsCoherence (signal processing)Optical noiseFrequency noisebusinessInstrumentationcoherence function
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XIPE: the X-ray imaging polarimetry explorer

2013

arXiv:1309.6995v1.-- et al.

AstronomyAstrophysics::High Energy Astrophysical PhenomenaPolarimetryFOS: Physical sciencesAstrophysics7. Clean energy01 natural scienceslaw.inventionX-raySettore FIS/05 - Astronomia E Astrofisicalaw0103 physical sciencesPolarimetry010303 astronomy & astrophysicsInstrumentation and Methods for Astrophysics (astro-ph.IM)Solar and Stellar Astrophysics (astro-ph.SR)Astronomy X-ray PolarimetryPhysicsHigh Energy Astrophysical Phenomena (astro-ph.HE)Solar flare[SDU.ASTR]Sciences of the Universe [physics]/Astrophysics [astro-ph]010308 nuclear & particles physics[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE]White dwarfAstronomy and AstrophysicsTorusMagnetic reconnectionPolarization (waves)Neutron starAstrophysics - Solar and Stellar Astrophysics13. Climate actionSpace and Planetary Science[SDU]Sciences of the Universe [physics]Astrophysics::Earth and Planetary AstrophysicsAstrophysics - High Energy Astrophysical PhenomenaAstrophysics - Instrumentation and Methods for AstrophysicsFlare
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CCDC 1423735: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CCDC 1423728: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CSD 1423732: Experimental Crystal Structure Determination

2010

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1423724: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CCDC 1423726: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CCDC 1423733: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CCDC 1423731: Experimental Crystal Structure Determination

2015

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell Parameterscatena-[(mu-carbonato)-calcium]Experimental 3D Coordinates
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CSD 1423729: Experimental Crystal Structure Determination

2010

Related Article: E. Zolotoyabko, E. N. Caspi, J. S. Fieramosca, R. B. Von Dreele, F. Marin, G. Mor, L. Addadi, S. Weiner and Y. Politi|2010|Cryst.Growth Des.|10|1207|doi:10.1021/cg901195t

Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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