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    • 1. 发明申请
    • THERMALLY SELF-CORRECTING GAIN MODULES AND ASSOCIATED SYSTEMS AND METHODS
    • 热自动校正增益模块及相关系统及方法
    • US20080069161A1
    • 2008-03-20
    • US11943857
    • 2007-11-21
    • Hsian ChouYu-Lin Wang
    • Hsian ChouYu-Lin Wang
    • H01S3/04
    • H01S3/0627H01S3/02H01S3/042H01S3/0604H01S3/07H01S3/08072
    • Aspects of the present invention are directed to the use of optical gain structures that include alternating layers of gain medium and transparent heat conductors in which the gain medium itself functions as a correction optic. The gain medium changes to an optimum or desired shape because of the thermal changes occurring as the materials of the optical gain structure(s) reach a desired optical output condition. At the desired optical output conditions, the gain medium conforms to a desired shape. The desired shape may be, for example, that of an optical surface of a transparent heat conductor. By designing the initial shape of the gain medium such that the physical contact with the transparent heat conductor is maximized at the desired optical output conditions, conductive heat transfer between the gain medium and heat conductor(s) is maximized at the desired optical output condition.
    • 本发明的方面涉及使用包括增益介质和透明导热体的交替层的光学增益结构,其中增益介质本身用作校正光学元件。 由于随着光增益结构的材料达到期望的光输出条件而发生热变化,增益介质变为最佳或期望的形状。 在期望的光输出条件下,增益介质符合所需的形状。 期望的形状可以是例如透明导热体的光学表面的形状。 通过设计增益介质的初始形状,使得与期望的光输出条件下的与透明导热体的物理接触最大化,增益介质和热导体之间的导电热传递在期望的光输出条件下被最大化。
    • 2. 发明申请
    • Thermally self-correcting gain modules and associated systems and methods
    • 热自校正增益模块及相关系统和方法
    • US20060114951A1
    • 2006-06-01
    • US11000632
    • 2004-12-01
    • Hsian ChouYu-Lin Wang
    • Hsian ChouYu-Lin Wang
    • H01S3/00
    • H01S3/0627H01S3/02H01S3/042H01S3/0604H01S3/07H01S3/08072
    • Aspects of the present invention are directed to the use of optical gain structures that include alternating layers of gain medium and transparent heat conductors in which the gain medium itself functions as a correction optic. The gain medium changes to an optimum or desired shape because of the thermal changes occurring as the materials of the optical gain structure(s) reach a desired optical output condition. At the desired optical output conditions, the gain medium conforms to a desired shape. The desired shape may be, for example, that of an optical surface of a transparent heat conductor. By designing the initial shape of the gain medium such that the physical contact with the transparent heat conductor is maximized at the desired optical output conditions, conductive heat transfer between the gain medium and heat conductor(s) is maximized at the desired optical output condition.
    • 本发明的方面涉及使用包括增益介质和透明导热体的交替层的光学增益结构,其中增益介质本身用作校正光学元件。 由于随着光增益结构的材料达到期望的光输出条件而发生热变化,增益介质变为最佳或期望的形状。 在期望的光输出条件下,增益介质符合所需的形状。 期望的形状可以是例如透明导热体的光学表面的形状。 通过设计增益介质的初始形状,使得与期望的光输出条件下的与透明导热体的物理接触最大化,增益介质和热导体之间的导电热传递在期望的光输出条件下被最大化。