LYSO crystal is an ideal generation scintillator crystal. LYSO stand for Cerium doped Lutetium Yttrium Orthosilicate. LYSO crystal has the advantages of high light output, high density, fast decay time, good energy resolution and low cost. These properties mean that LYSO is an ideal candidate for a range of ray detection applications in nuclear physics and nuclear medicine, which require higher though improved timing resolution and superior energy revolution.
Growth Method: Czochralski method
Max. Blank Size: Dia65mmxLength200mm
Shapes: cylinder, rectangular solid, disk
The thinnest thickness: 0.05mm
Content of (Ce): 0.5%mol
Physical Properties Of our LYSO:
Density(g/cm3) 7.1
light output to NaI(Tl)(%) 75
Decay time(ns) 41
Energy Resolution(%) 10
Fluorescence wavelength(nm) 420
Hardness(Mohs) 5.8
Array form 16x1, 8x8, 16x16, 21x21, and customization Minimum singe pixel: 0.2x0.2x0.5mm Available Crystal material: LYSO(Ce), BGO and CsI(Tl Reflective Materials BaSO4, 3M ESR for BGO and LYSO array TiO2 main for CsI(Tl) array Thickness of BaSO4 and TiO2 0.1mm Thickness of ESR 0.065mm Type: single-layer array, double-layer array and Linear array Application: LYSO and BGO array: Nuclear medicine such as PET and SPECT CsI(Tl) array: Security scanner and Container scanner
Bismuth germinate Bi4Ge3O12 commonly abbreviated as BGO, is the crystalline form of an inorganic oxide with cubic eulytine structure, colorless, transparent and insoluble in water. When exposed to radiation of high energy particles or other sources, such as gamma-rays, x-rays, it emits a green fluorescent light with a peak wavelength of 480nm, with its high stopping power, high scintillation efficiency, good energy resolution and non-hygroscopes, Our BGO is a good scintillation material and has found a wide range of applications in high energy physics, nuclear physics, space physics, nuclear medicine, geological prospecting and other industries. Growth Method: Bridgman method Max. Blank Size: 40mmx80mmx200mm Dia65mmxLength200mm Standard size: Dia1.0â??xLength1.0â??,Dialength 2.0â??xLength2.0â?? Shapes: cylinder, rectangular solid, disk The thinnest thickness: 0.05mm The Property of Our BGO Crystal: Density(g/cm3) 7.13 Emission center wavelength(nm): 480 light output To NaI(Tl)(%) 20 energy resolution(%) 12 Decay time(ns) 300 Hardness(Mohs) 5
Cerium-doped Lutetium Yttrium Orthosilicate or LYSO(Ce) scintillator has the advantages of high light output, high density, short decay time, excellent timing and energy resolution. These properties make LYSO(Ce) becoming the most popular scintillators in Nuclear medicine (Positron Emission Tomography, PET/CT, and SPECT scan system), high energy physics, security scanners, and other applications. OST Photonics has a complete set of crystal processing and assembly line, we can process all kinds of lyso scintillation crystal and LYSO(Ce) arrays according to customer's requirements. We have our own laboratory to test the product performance to ensure that the product performance meets the requirements of our customers. We provide professional solutions for lyso crystal growth, surface treatment and array assembly. Application of LYSO Ce Scintillators (LYSO:Ce Scintillators) Positron emission tomography-computed tomography (PET-CT) Nuclear magnetic resonance imaging (NMRI) Single photon emission computed tomography (SPECT) High energy physics Advantages of LYSO scintillator (LYSO:Ce Scintillators) High light output High density Short decay time Stable chemical and physical lyso scintillator properties The Ability of OST Photonics Maximum Size: 105mm x 200mm Available items: monolithic crystal, scintillation screen, pixellated array
Properties of LYSO: Density(g.cm-3): 7.2 Radiation length(cm): 1.16 Decay constant(ns): 40 Emission peak(nm): 420 Light output(Photons/Mev): 20,000 Anti-radiation(rad): 108 Melting point(C): 2047 Hardness(Mho): 5.8 Refractive Index: 1.82 Hygroscopicity: none Cleavage: none.
Tl-doped sodium iodide NaI(Tl)ï¼?It is most widely used in all the scintillation materials especially used in Environmental monitoringï¼?radiation monitoringï¼?oil exploration and nuclear medicine. It has the maximum light output in all the scintillation crystals. Typesï¼?Blank and Aluminum encapsulation stock size: Dia:1.0â??xL1.0â??, Dia: 2.0â??xL2.0â?? Max size for cylinder: Dia:150mmxL400mm Max size for rectangular solid: 100x100x400mm Property of our NaI(Tl) crystal: Density (g/cm3) 3.67 Light output(%NaI:Tl) 100 Hygroscopicity Deliquescent Energy Resolution (%) 7.3 Emission wavelength(nm) 415 Hardness (Mohs) 2
The luminescence efficiency of CsI(Na) is similar to that of NaI(Tl) crystals. The emission spectrum peaked at 420nm can match well with PMT. Its temperature dependence is small and can be mainly applied in the well logging. Regular size: Dia 50mmx Length300mm Customized sizeï¼?Dia 39mmxLength 49mm Typesï¼?Blank and aluminum encapsulation Property of our CsI(Na) Density (g/cm3) 4.51 Light Yield NaI(Tl) (%) 85 Radiation length 1.86 Emission peak(nm) 420 Hygroscopicity deliquescent Hardness (Mohs) 2 Melting point(â??) 621
PLEASE CONTACT me for more specific information about the price and details: SKYPE florence-shpic flora AT topscintech DOT com --No limit on the minimum order quantity --Fast delivery --Reasonable price --Strict control over the dimension error and angle error --Advanced technology on the crystal array and assembly -- Excellent coating skills --Processing on giving materials --Offer module splicing Applications: Nuclear medicine, high energy physics (Electron Positron Collider etc.), nuclear physics, space physics, geological exploration and other industries. Note: Other crystals with different specifications and shapes are also available. Please contact for more.
Supplier: Scintillation crystals
OST Photonics LiTaO3 Crystal Substrates The chemical formula of lithium tantalate is LiTaO3, lithium tantalate crystal is colorless or yellowish crystal. LiTaO3 crystal is a ferroelectric crystal with excellent electro-optical, piezoelectric, electrical and pyroelectric properties. Use the pulling method to grow. The lithium tantalate crystal is used as a Q-switch in laser technology, as a pyroelectric detector in infrared technology, and can also be used to make filters and resonators.