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Ferrimagnetic garnet corrected for temperature dependence of the faraday effect and method for making the same

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专利汇可以提供Ferrimagnetic garnet corrected for temperature dependence of the faraday effect and method for making the same专利检索,专利查询,专利分析的服务。并且A ferrimagnetic garnet having the general composition Y3 x Gdx Fe5O12 in which x has a value between 0 and 3 at which, for a given wavelength, the temperature dependence of the Faraday effect is corrected.,下面是Ferrimagnetic garnet corrected for temperature dependence of the faraday effect and method for making the same专利的具体信息内容。

  • 2. A method of using a gadolinium substituted yttrium-iron garnet of the composition Y3 x Gd Fe5 O12, comprising subjecting said garnet to electromagnetic radiation of the wavelength lambda 6 Mu and to a temperature range T + or - 40* K, where x and T are defined in accordance with the following table: x T (*K) 0.5 200 1.0 260 1.5 350 3.0 410 whereby the Faraday effect is substantially independent of temperature within said temperature range.
  • 3. An electromagnetic wave influencing component comprising a gadolinium substituted yttrium-iron garnet of the composition Y3 x Gd Fe5 O12, and means for simultaneously subjecting said garnet to a temperature range of T + or - 15* K and to an electromagnetic radiation of the wavelength lambda 1.15 Mu wherein x and T are determined in accordance with the following table: x T (*K) 0 240 0.65 273 0.85 298 0.90 308 1.10 318 1.25 320 1.50 322 whereby the Faraday effect in said garnet is substantially independent of temperature within said temperature range.
  • 4. An electromagnetic wave influencing component comprising a gadolinium substituted yttrium-iron garnet of the composition Y3 x Gd Fe5 O12, and means for simultaneously subjecting said garnet to a temperature range of T + or - 40* K and to an electromagnetic radiation wavelength lambda 6 Mu , wherein x and T are determined in accordance with the following table: x T (*K) 0.5 200 1.0 260 1.5 350 3.0 410 whereby the Faraday effect is substantially independent of temperature within said temperature range.
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