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Yttrium Iron Garnet Sputtering Target

Yttrium Iron Garnet Sputtering Target

Yttrium Iron Garnet Sputtering Target
Product No NRE-43179
CAS No. 12063-56-8
Formula Y3Fe5O12
Molecular Weight 737.94 g/mol
Purity 99.9%
Density 5.11 g/cm3
Thickness 3 mm ± 0.5mm (can be customized)
Diameter 50 mm ± 1mm (can be customized)
Shape Round
Electrical Resistivity NA
Electronegativity NA

Yttrium Iron Garnet Sputtering Target

Introduction:

Yttrium iron garnet sputtering target is a synthetic crystalline material with the chemical formula Y₃Fe₅O₁₂. It is a member of the garnet family and is known for its unique magnetic and optical properties. YIG exhibits low magnetic losses, making it an excellent material for various high-frequency applications. As a sputtering target, YIG is used to produce thin films that are critical in advanced technologies, particularly in the fields of magnetics and photonics.

Applications

Magnetic Devices:

YIG is extensively used in the fabrication of magnetic films for devices such as isolators, circulators, and other microwave components, where its low magnetic loss is highly advantageous.

Spintronics:

In the field of spintronics, YIG thin films are utilized for studies of spin transport and manipulation of electron spins, making them essential for the development of next-generation electronic devices.

Optical Components:

YIG can be used in the development of optical coatings, benefiting from its favorable optical properties, including transparency and high refractive index.

High-Frequency Electronics:

Employed in high-frequency and radio-frequency applications, YIG materials help enhance signal integrity and reduce loss in RF circuits.

Magnetic Sensors:

YIG films are explored for use in magnetic sensors, leveraging their sensitivity to magnetic fields for applications in data storage and detection.

Quantum Computing:

The unique properties of YIG make it a candidate for research in quantum computing, particularly in the development of quantum bits (qubits) based on spin dynamics.

 

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