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Encapsulated Scintillator

SrLaAlO4 Substrate

The strontium lanthanum aluminate (SrLaAlO4) crystal has no twins and phase transitions from the melting point to the low temperature. It has the same...

SrLaAlO4 Substrate

The strontium lanthanum aluminate (SrLaAlO4) crystal has no twins and phase transitions from the melting point to the low temperature. It has the same structure as the high-temperature superconductor YBCO. Compared with other substrates, the <001> plane has a moderate lattice mismatch with YBCO<001>. (2.5~3.5%). At the same time, the thermal expansion coefficient of this crystal is lower than that of other perovskite...

  • ManufacturerOST Photonics
  • CategoryCrystal Wafer and Substrate
  • Lead TimeQuoted per order
  • CustomizationSize, orientation and surface finish to drawing

The strontium lanthanum aluminate (SrLaAlO4) crystal has no twins and phase transitions from the melting point to the low temperature. It has the same structure as the high-temperature superconductor YBCO. Compared with other substrates, the <001> plane has a moderate lattice mismatch with YBCO<001>. (2.5~3.5%). At the same time, the thermal expansion coefficient of this crystal is lower than that of other perovskite crystals, which can deposit films at lower temperatures to improve lattice mismatch and reduce stress.

OST Photonics offers high quality SrLaAlO4 substrates for researchers and industries. Crystal size and thickness can be customized according to your requirements.

Features

  • No twins and phase transitions from the melting point to the low temperature
  • Good lattice mismatch with YBCO<001>
  • Low thermal expansion coefficient

Applications

  • Substrate material for high-temperature superconductor YBCO

Processing Capability

  • Orientation: <001>, etc.
  • Dimension: 1”, 2”, 2.6”, 10x5mm, 10x10mm, 15x15mm, 20x15mm, 20x20mm, etc.
  • Thickness: 0.5mm, 1.0mm, etc.
  • Available items: wafers, substrates, blanks and customized optics

Specification and Properties of SrLaAlO4 Substrates

Crystal StructureTetragonal
Lattice Constanta=3.756 Å c=12.63 Å
Melting Point1650 ℃
Density5.92 g/cm3
Hardness6-6.5 Mohs
Dielectric Constantsε=16.8
Growth MethodCzochralski
Orientation<001>, etc.
Orientation Tolerance±0.5° or better
Dimension1”, 2”, 2.6”, 10x5mm, 10x10mm, 15x15mm, 20x15mm, 20x20mm, etc.
Dimension Tolerance±0.1 mm or better
Thickness0.5mm, 1.0mm, etc.
Thickness Tolerance±0.05 mm or better
Surface FinishSingle side polished (SSP)/Double sides polished (DSP)
RoughnessRa≤5Å
PackageClass 100 clean bag, Class 1000 super clean room

Request A Quote For SrLaAlO4 Substrate

Send us your dimensions, orientation, surface finish and quantity. Our engineers reply with a technical proposal and price.

FAQ

Buyer Questions

What is the crystal structure of the SrLaAlO4 Substrate?
The crystal structure of the SrLaAlO4 Substrate is Tetragonal.
What is the lattice constant of the SrLaAlO4 Substrate?
The lattice constant of the SrLaAlO4 Substrate is a=3.756 Å c=12.63 Å.
What is the melting point of the SrLaAlO4 Substrate?
The melting point of the SrLaAlO4 Substrate is 1650 ℃.
What is the density of the SrLaAlO4 Substrate?
The density of the SrLaAlO4 Substrate is 5.92 g/cm3.
How do I get a quotation for the SrLaAlO4 Substrate?
Send the quantity, the specification and your destination port to Jiaxing AOSITE Photonics Technology Co.,Ltd. by email or telephone. There is no enquiry form on this site, so your message reaches an engineer directly rather than a contact queue.
Can the SrLaAlO4 Substrate be made to a custom specification?
Custom dimensions and finishes are quoted case by case against your drawing or written specification. Send what you need and the factory will confirm what is achievable, and at what tolerance, before you place the order.
Who manufactures the SrLaAlO4 Substrate?
Jiaxing AOSITE Photonics Technology Co.,Ltd., trading as OST Photonics, manufacturing in Jiaxing, Zhejiang, China since 2010.

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Send your specification, quantity and destination port. Our engineers reply with a technical proposal and a confirmed lead time.