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    • 6. 发明专利
    • OPTICAL MULTIPLEXER
    • JP2000275451A
    • 2000-10-06
    • JP7776899
    • 1999-03-23
    • KDD CORP
    • MIMURA HIDENORINODA YUKIONAKAI TETSUYATANI TOSHIO
    • G02B6/02G02B6/10
    • PROBLEM TO BE SOLVED: To allow light impinging on a refractive index gradient layer to efficiently shift into a core so as to multiplex certain wavelengths by providing a refractive index gradient clad layer. SOLUTION: A double clad fiber 10 includes a core layer 16 with the highest refractive index, a refractive-index gradient clad layer 18 located outside the core layer 16 and having a refractive index which is lower than the refractive index of the core layer 16 and decreases toward the outside, and an outer clad layer 20 located outside the refractive index gradient clad layer 18 and having a refractive index which is even lower than the lowest refractive index of the refractive index gradient clad layer 18. A multi-mode fiber 12 comprises a core layer 22 with a refractive index lower than the lowest refractive index of the refractive index gradient clad layer 18 and a clad layer 24 with the same refractive index as the outer clad layer 20. The outer clad layer 20 of the double clad fiber 10 and the clad layer 24 of the multi-mode fiber 12 are partially removed and the double clad fiber 10 and the multi-mode fiber 12 are bonded together in a bonding portion 14 at their respective side faces in such a manner that the refractive index gradient clad layer 18 makes direct contact with the core layer 22 over a predetermined range of length.
    • 8. 发明专利
    • OPTICAL AMPLIFIER
    • JP2000058953A
    • 2000-02-25
    • JP22721798
    • 1998-08-11
    • KDD CORP
    • MIMURA HIDENORINODA YUKIONAKAI TETSUYATANI TOSHIOUSAMI MASASHI
    • H01S3/10H01S3/06
    • PROBLEM TO BE SOLVED: To miniaturize an optical amplifier having the ultrabroad zone of 1.5 to 1.6 μm band. SOLUTION: A narrow strip light of 1.55 μm and a narrow strip light of 1.58 μm are made incident on the part A of a light circulator 12 from an input signal wire 10, and the lights are made incident on an optical amplifier 14 from a part B. The light outputted from the part B of the optical circulator 12 is amplified by the optical amplifier 14, and it is made incident on a reflection filter 18. The reflection filter 18 reflects the 1.55 μm strip light and it permeates through the 1.58 μm strip light. The 1.55 μm strip light reflected by the reflection filter 18 is made incident on the optical amplifier 14. The 1.58 μm strip light, which permeated through the reflection filter 18, is amplified by an optical amplifier 20, reflected by a reflection mirror 22, amplified by the optical amplifier 20, and it is made incident on the optical amplifier 14 passing through the reflection filter 18. The 1.55 μm strip light, which is made incident on the light amplifier 14, and the 1.59 μm strip light are amplified, they are made incident on the part B of the optical circulator 12, and it is outputted to an output signal wire 16 from a part C.
    • 9. 发明专利
    • Optical fiber
    • 光纤
    • JPH11274613A
    • 1999-10-08
    • JP6966198
    • 1998-03-19
    • Kdd Corpケイディディ株式会社
    • MIMURA HIDENORINODA YUKIONAKAI TETSUYATANI TOSHIO
    • H01S3/07H01S3/06
    • PROBLEM TO BE SOLVED: To obtain a high refractive index glass fiber in which clad mode can be removed quickly by arranging a layer containing a material for absorbing a light of specified wavelength on the outside of a clad layer. SOLUTION: A core 10 is composed of 70Te-10Zn-10Ba-10Na and added with Er. A clad 12 is composed of 55Te-7Ge-10Zn-10Ba-18Na. An absorption layer 14 has same glass composition as the core 10 but Pr is added by 10,000 ppm. The core 10, the clad 12 and the absorption layer 14 have refractive indexes of 1.96, 1.93 and 1.96, respectively. Since the absorption layer 14 has higher refractive index than the clad 12, light propagates quickly from the clad 12 to the absorption layer 14. When the absorption layer 14 is arranged on the outside of the clad layer, clad mode can be removed efficiently.
    • 要解决的问题:为了获得通过在包层的外侧布置包含用于吸收特定波长的光的材料的层而能够快速去除包层模式的高折射率玻璃纤维。 解决方案:芯10由70Te-10Zn-10Ba-10Na组成并添加Er。 包层12由55Te-7Ge-10Zn-10Ba-18Na组成。 吸收层14具有与芯10相同的玻璃组成,但是Pr加入10,000ppm。 芯10,包层12和吸收层14的折射率分别为1.96,1.93和1.96。 由于吸收层14具有比包层12更高的折射率,所以光从包层12迅速传播到吸收层14.当吸收层14布置在包层的外侧时,可以有效地去除包覆模式。