High Temperature Superconducting Thin Monocrystalline Substrate 10x10x0.5mmt SrTiO3
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10x10x0.5mmt Strontium titanate SrTiO3 crystal wafers for High temperature superconducting junction technology
Product Name:Strontium titanate (SrTiO 3) crystal substrateProduct Description: SrTiO 3 perovskite crystal structure with a variety of good lattice matching material, which is a variety of high-temperature superconducting oxide thin film and the substrate material quality, but also widely used in special optical window and the highest quality sputtering target timber.HB company has an independent set of production line, from high-quality SrTiO3 powder, SrTiO3 single crystal polished to a variety of sizes epitaxial substrate for high-quality low-cost global provider of monocrystalline and SrTiO3 substrates. Technical parameters:
Specifications: Gauge Epitaxial polishing a substrate <100>, <110>, <111> ± 0.5 o,single throw or double throw, Ra <5 Å; φ30 × 0.5mm, φ1 "× 0.5mm, 10 × 10 × 0.5mm, 10 × 5 × 0.5mm. Note: You can provide special sizes according to customer needs and direction of the substrate.
Application: SrTiO3 is also the preferred single crystal material for high temperature superconducting junction technology (using bimorph or stepped substrates) and substrate stepping (beveling and heat treatment at specific angles).
Barium titanate (SrTiO3) is one of the most widely used high-temperature superconducting single crystal substrates. It has good lattice matching with high temperature superconducting materials such as YBaCuO, has no twin structure, and has excellent physical and mechanical properties. A variety of high-temperature superconducting thin films (Y-series, Bi-series, La-series, etc.) fabricated using various film forming techniques (such as magnetron sputtering, pulsed laser deposition, laser molecular beam epitaxy, etc.) can obtain TCO ≥ 90°K, JCO≥106A/cm2 and other indicators. SrTiO3 is also the preferred single crystal material for high temperature superconducting junction technology (using bimorph or stepped substrates) and substrate stepping (beveling and heat treatment at specific angles).
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