发明名称 Optical amplification component and fiber laser device
摘要 An optical amplification component 1 includes a heat dissipation plate 10 and an amplification optical fiber 20 arranged on the heat dissipation plate 10. The amplification optical fiber 20 includes a first section SC1 extending from a reference position RP between a first end E1 and a second end E2 of the amplification optical fiber 20 up to a position at which a fiber portion 20A extending from the reference position RP toward the end E1 and a fiber portion 20B extending from the reference position RP toward the end E2 are aligned in one direction, and a second section SC2 where the fiber portions 20A and 20B aligned in one direction are wound in a spiral outside the first section SC1. The circumferences of one and the other end parts of the amplification optical fiber 20 are separated from side surfaces of the fiber portions wound in a spiral.
申请公布号 US9312654(B2) 申请公布日期 2016.04.12
申请号 US201414164534 申请日期 2014.01.27
申请人 FUJIKURA LTD. 发明人 Taya Hiroyuki
分类号 H01S3/067;G02B6/43;H01S3/04;H01S3/0941;H01S3/042;G02B6/42 主分类号 H01S3/067
代理机构 Westerman, Hattori, Daniels & Adrian, LLP 代理人 Westerman, Hattori, Daniels & Adrian, LLP
主权项 1. An optical amplification component comprising: a heat dissipation plate; and an amplification optical fiber arranged on the heat dissipation plate, the amplification optical fiber including a first section extending from a reference position between a first end and a second end of the amplification optical fiber up to a position at which a first fiber portion extending from the reference position toward the first end and a second fiber portion extending from the reference position toward the second end are aligned in one direction, and a second section where the first fiber portion and the second fiber portion are wound in a spiral outside the first section along each other, wherein the circumference of a first end part of the amplification optical fiber and the circumference of a second end part of the amplification optical fiber are separated from side surfaces of the first fiber portion and the second fiber portion wound in a spiral, and wherein the heat dissipation plate has a structure in which a thermal resistance in a first heat dissipation area in which each of the first end part and the second end part of the amplification optical fiber is arranged is smaller than the thermal resistance in a second heat dissipation area in which the first section is arranged such that the amount of heat dissipation in the first heat dissipation area is larger than the amount of heat dissipation in the second heat dissipation area.
地址 Tokyo JP