Search results for "silicon"

showing 10 items of 1391 documents

SphinX: A fast solar Photometer in X-rays

2008

The scientific goals and construction details of a new design, Polish X-ray spectrophotometer are given. It will be incorporated within the Russian TESIS X and EUV complex aboard the forthcoming CORO-NAS solar mission. SphinX (Solar Photometer in X-rays) will use PIN silicon detectors for high time resolution (0.01 s) measurements of the solar spectra of quiet and active corona in the range 0.5–15 keV. A new filter-fluorescence target concept will be employed to allow for a fast photometry of the solar X-ray flux variations in selected, well defined narrow spectral bands including the Fe XXVI and Fe XXV iron line groups.

PhysicsSphinxSiliconbusiness.industrySolar spectraX-rays astronomyExtreme ultraviolet lithographysolar coronaDetectorchemistry.chemical_elementAstronomyAstronomy and AstrophysicsAstrophysicsSpectral bandsPhotometerlaw.inventionPhotometry (optics)OpticsSettore FIS/05 - Astronomia E AstrofisicachemistrySpace and Planetary SciencelawX-ray spectroscopybusiness
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High-resolution multichannel Time-to-Digital Converter core implemented in FPGA for ToF measurements in SiPM-PET

2013

In this contribution, Coincidence Resolving Time (CRT) results with the developed multichannel FPGA-TDC are showed as a function of different configurations for both, the sensor bias voltage and the digitizer threshold. The dependence of the CRT with the sensor matrix temperature, the amount of SiPM active area and the crystal type are also analyzed. Preliminary measurements carried out with a crystal array of 2 mm pixel size and 10 mm height have shown time resolutions for the entire 144 SiPM two-detectors ensemble as good as 800 ps.

PhysicsTime-to-digital converterOpticsSilicon photomultiplierPixelbusiness.industryDetectorElectronic engineeringBiasingbusinessField-programmable gate arrayTemperature measurementCoincidence2013 IEEE Nuclear Science Symposium and Medical Imaging Conference (2013 NSS/MIC)
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Inverse dispersion engineering in silicon waveguides

2014

We present a numerical tool that searches an optimal cross section geometry of silicon-on-insulator waveguides given a target dispersion profile. The approach is a gradient-based multidimensional method whose efficiency resides on the simultaneous calculation of the propagation constant derivatives with respect to all geometrical parameters of the structure by using the waveguide mode distribution. The algorithm is compatible with regular mode solvers. As an illustrative example, using a silicon slot hybrid waveguide with 4 independent degrees of freedom, our approach finds ultra-flattened (either normal or anomalous) dispersion over 350 nm bandwidth in less than 10 iterations.

PhysicsWaveguide (electromagnetism)Siliconbusiness.industryBandwidth (signal processing)Mathematical analysischemistry.chemical_elementInverseStatistical and Nonlinear PhysicsÒpticaAtomic and Molecular Physics and OpticsNonlinear systemOpticschemistryPropagation constantbusinessRefractive indexPhotonic-crystal fiber
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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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Electric conduction in semiconductors: a pedagogical model based on the Monte Carlo method

2008

We present a pedagogic approach aimed at modelling electric conduction in semiconductors in order to describe and explain some macroscopic properties, such as the characteristic behaviour of resistance as a function of temperature. A simple model of the band structure is adopted for the generation of electron–hole pairs as well as for the carrier transport in moderate electric fields. The semiconductor behaviour is described by substituting the traditional statistical approach (requiring a deep mathematical background) with microscopic models, based on the Monte Carlo method, in which simple rules applied to microscopic particles and quasi-particles determine the macroscopic properties. We …

Physicsbusiness.industryMonte Carlo methodGAASGeneral Physics and AstronomyElectron holeFunction (mathematics)Thermal conductionSemiconductorSimple (abstract algebra)Electric fieldQuasiparticleStatistical physicsDRIFT VELOCITYbusinessSILICON
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Preliminary radiation hardness tests of single photon Si detectors

2010

Single photon Si detectors were fabricated by STMicroelectronics and fully characterized in standard operation conditions and after irradiations. Both single cells and arrays, of dimensions ranging from 5x5 up to 64x64, were electrically tested. The devices operation was studied as a function of the temperature from -25 degrees C to 65 degrees C varying the voltage over breakdown, from 5% up to 20% of the breakdown voltage before and after irradiation using both light ions, 10 MeV B ions to doses in the range 3x10(7)-5x10(10) cm(-2), and X-rays irradiations in the range 0.5-20 krad(Si). Optical characterization was performed using a laser at 659 nm and opportunely chosen filters to vary the…

Physicsbusiness.industryOptical powerSilicon Photomultiplier single photon avalanche diode dark count gain light ion irradiation X-rays irradiationSilicon photomultiplierOpticsSingle-photon avalanche diodeRadiation damageOptoelectronicsBreakdown voltageIrradiationbusinessRadiation hardeningDark current
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Vortex beam generation and other advanced optics experiments reproduced with a twisted-nematic liquid-crystal display with limited phase modulation

2016

In this work we propose the use of twisted-nematic liquid-crystal spatial light modulators (TN-LC-SLM) as a useful tool for training students in the manipulation of light beams with phase-only masks. In particular, we focus the work on the realization of phase-only gratings and phase-only spiral phases for the generation of vortex beams, beams carrying orbital angular momentum (OAM). Despite the extensive activity in this field, its experimental implementation for educational purposes is limited because it requires the use of very expensive high-resolution liquid-crystal on silicon (LCOS) SLMs. Here, we show that a low-cost experimental implementation can be done with older TNLC technology.…

Physicsbusiness.industryPhase (waves)General Physics and Astronomy01 natural scienceslaw.invention010309 opticsLiquid crystal on siliconLens (optics)Condensed Matter::Soft Condensed MatterOpticsModulationlaw0103 physical sciencesLight beam010306 general physicsbusinessDiffraction gratingIntensity modulationPhase modulation
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Data quality monitors of vertex detectors at the start of the Belle II experiment

2019

The Belle II experiment features a substantial upgrade of the Belle detector and will operate at the SuperKEKB energy-asymmetric e+e− collider at KEK in Tsukuba, Japan. The accelerator completed its first phase of commissioning in 2016, and the Belle II detector saw its first electron-positron collisions in April 2018. Belle II features a newly designed silicon vertex detector based on double-sided strip layers and DEPFET pixel layers. A subset of the vertex detector was operated in 2018 to determine background conditions (Phase 2 operation). The collaboration completed full detector installation in January 2019, and the experiment started full data taking. This paper will report on the fin…

Physics::Instrumentation and DetectorsQC1-999vertex detectorBELLEquality: monitoring01 natural sciences7. Clean energyprogrammingSilicon vertex detectorlaw.inventionNuclear physicssemiconductor detector: pixellaw0103 physical sciencesQuality monitoring[INFO]Computer Science [cs][PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]010306 general physicsCollidernumerical calculationsdetector: designactivity reportPhysics010308 nuclear & particles physicsPhysicsDetectorUpgradeFull dataData qualityPhysics::Accelerator Physicssemiconductor detector: microstripHigh Energy Physics::ExperimentupgradeVertex detectormonitoring: on-lineperformance
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Biosilicification of loricate choanoflagellate: organic composition of the nanotubular siliceous costal strips of Stephanoeca diplocostata.

2010

SUMMARY Loricate choanoflagellates (unicellular, eukaryotic flagellates; phylum Choanozoa) synthesize a basket-like siliceous lorica reinforced by costal strips (diameter of approximately 100 nm and length of 3 μm). In the present study, the composition of these siliceous costal strips is described, using Stephanoeca diplocostata as a model. Analyses by energy-dispersive X-ray spectroscopy (EDX), coupled with transmission electron microscopy (TEM), indicate that the costal strips comprise inorganic and organic components. The organic, proteinaceous scaffold contained one major polypeptide of mass 14 kDa that reacted with wheat germ agglutinin. Polyclonal antibodies were raised that allowed …

PhysiologyLoricate choanoflagellateBiosilicificationNanotechnologyStructural analysisOrganic compositionAquatic ScienceAlkaliesStephanoeca diplocostataHydrofluoric AcidBiosilicification; Loricate choanoflagellate; Organic composition; Structural analysisAnimalsChemical PrecipitationOrganic ChemicalsChoanoflagellateMolecular BiologyEcology Evolution Behavior and SystematicsChoanoflagellatabiologyChemistryAnimal StructuresProteinsSpectrometry X-Ray Emissionbiology.organism_classificationElementsSilicon DioxideImmunohistochemistryWheat germ agglutininNanostructuresSolutionsElectrophoresisTransmission electron microscopyInsect ScienceBiophysicsAnimal Science and ZoologyComposition (visual arts)Electrophoresis Polyacrylamide GelLorica (biology)ChoanozoaThe Journal of experimental biology
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Light trapping by plasmonic nanoparticles

2020

Abstract Metallic nanoparticles sustaining localized surface plasmon resonances are of great interest for enhancing light trapping in thin film photovoltaics. In this chapter, we explore the correlation between the structural and optical properties of self-assembled silver nanostructures fabricated by a solid-state dewetting process on various substrates relevant for silicon photovoltaics and later integrated into plasmonic back reflectors. Our study allows us to optimize the performance of nanostructures by identifying the fabrication conditions in which desirable circular and uniformly spaced nanoparticles are obtained. Second, we introduce a novel optoelectronic spectroscopic method that…

Plasmonic nanoparticlesMaterials scienceSiliconbusiness.industryPhysics::Opticschemistry.chemical_elementSettore ING-INF/01 - ElettronicachemistryPhotovoltaicsLight trapping Localized surface plasmon resonance Photocurrent enhancement Plasmon-enhanced Self-assembly Silver nanoparticles Thin film silicon solar cellsOptoelectronicsQuantum efficiencyDewettingThin filmbusinessPlasmonLocalized surface plasmon
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