Bismuth Yttrium Iron Garnet (BiY₂Fe₅O₁₂) Sputtering Target
Overview
Bismuth Yttrium Iron Garnet (Bi:YIG), with the chemical formula BiY₂Fe₅O₁₂, is a magnetic garnet material known for its exceptional magneto-optical properties. By partially substituting Yttrium with Bismuth in YIG (Yttrium Iron Garnet), Bi:YIG exhibits an increased Verdet constant, making it highly efficient in Faraday rotation applications across the visible and near-infrared spectrum.
Key Properties
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Chemical Formula: BiY₂Fe₅O₁₂
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Crystal Structure: Cubic garnet
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High Verdet Constant: Enhanced Faraday rotation efficiency compared to pure YIG
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Optical Transparency: High transmission in visible and near-IR wavelengths
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Magnetic Softness: Low coercive force and low magnetic loss
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Thermal Stability: Suitable for high-temperature and long-term use
Typical Applications
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Optical Isolators – Prevent back reflections in laser and fiber optic systems
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Optical Circulators – Enable directional light control in photonic circuits
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Magneto-Optical Modulators – For laser modulation and signal processing
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Spintronics – Research on magnonics and spin wave devices
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Thin Film Research – Deposition of magneto-optical coatings for integrated optics
Example Specification
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Material: Bismuth Yttrium Iron Garnet (BiY₂Fe₅O₁₂)
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Purity: ≥ 99.9%
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Size: Ø50.8 × 6.35 mm
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Bonding: Copper backing plate Ø50.8 × 2.54 mm, total thickness < 8.89 mm
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Deposition Method: RF Magnetron Sputtering
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