IP Library Granted Patent US 12675010
Granted Patent B2
US 12675010 · App. 18/708,087 · Granted Jul 7, 2026

Paramagnetic garnet-type transparent ceramic, magneto-optical material, and magneto-optical device

Inventors: Masanori Ikari (Annaka, JP); Takuto Matsumoto (Annaka, JP); Keita Tanaka (Annaka, JP)
Assignee: SHIN-ETSU CHEMICAL CO., LTD.
G02F1/093C04B35/44C04B35/505G02F1/0036C04B2235/3224
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Quick Facts
Patent No.
US 12675010
App. No.
18/708,087
Granted
Jul 7, 2026
Kind
B2
Abstract

The paramagnetic garnet-type transparent ceramic a sintered object of a composite oxide represented by formula (1), (Tb 1-x-y Y x Sc y ) 3 (Al 1-z Sc z ) 5 O 12 (0.05≤x<0.4, 0≤y<0.004, 0.6≤1−x−y<0.95, 0≤z<0.004, and 0.001<y+z<0.005), which contains SiO 2 as a sintering aid in an amount larger than 0 mass % but not larger than 0.1 mass %, and having an average sinter-grain diameter of 5 μm or larger. The transparent ceramic has a total light transmittance of 84.0% or greater and a forward scatter of 0.5% or less at an optical path length of 25 mm and a wavelength of 1,064 nm and has a total light transmittance of 84.0% or greater and a forward scatter of 0.5% or less at an optical path length of 25 mm and a wavelength of 1,300 nm. In the formula (1).

Claims (11)

1 . A paramagnetic garnet-type transparent ceramic which is a sintered body of a composite oxide having the formula (1):

(Tb 1-x-y Y x Sc y ) 3 (Al 1-z Sc z ) 5 O 12   (1)

wherein 0.05≤x≤0.4, 0≤y<0.004, 0.6≤1−x−y<0.95, 0≤z<0.004, and 0.001<y+z<0.005,

wherein the paramagnetic garnet-type transparent ceramide contains more than 0% by weight to 0.1% by weight of SiO 2 as a sintering aid, has an average sintered grain size of 5 μm or more, has a total light transmittance of 84.0% or more and a forward scatter of 0.5% or less at a wavelength of 1,064 nm for an optical path length of 25 mm, and has a total light transmittance of 84.0% or more and a forward scatter of 0.5% or less at a wavelength of 1,300 nm for an optical path length of 25 mm.

2 . The paramagnetic garnet-type transparent ceramic of claim 1 , having a Verdet constant of 32 rad/(T·m) or more at a wavelength of 1,064 nm.

3 . The paramagnetic garnet-type transparent ceramic of claim 1 wherein when laser light of wavelength of 1,064 nm is incident, an extinction ratio over an entire plane within an optical effective diameter thereof for an optical path length of 25 mm is 42 dB or more.

4 . The paramagnetic garnet-type transparent ceramic of claim 1 , wherein when laser light of wavelength 1,064 nm is incident at a beam diameter of 1.6 mm and an incident power of 100 W, a percent change in its beam diameter of the laser light for an optical path length of 25 mm is 10% or less.

5 . The paramagnetic garnet-type transparent ceramic of claim 1 , having a thermal conductivity of 4.8 W/(m·K) or more.

6 . A magneto-optical material comprising the paramagnetic garnet-type transparent ceramic of claim 1 .

7 . A magneto-optical device constructed using the magneto-optical material of claim 6 .

8 . The magneto-optical device of claim 7 which is an optical isolator comprising a Faraday rotator composed of the paramagnetic garnet-type transparent ceramic and polarizers disposed forward and backward of the Faraday rotator on an optical axis thereof, the optical isolator being usable in a wavelength band of from 0.9 μm to 1.1 μm.