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    • 2. 发明授权
    • Method and system for enhancing optical efficiency for an EAMR head
    • 用于提高EAMR头的光学效率的方法和系统
    • US08456966B1
    • 2013-06-04
    • US12971754
    • 2010-12-17
    • Zhong ShiShing LeeHongxing YuanRabee M. Ikkawi
    • Zhong ShiShing LeeHongxing YuanRabee M. Ikkawi
    • G11B11/00
    • G11B5/314G11B5/6088G11B2005/0021
    • A method and system for providing an EAMR transducer and a waveguide used therein are described. The EAMR transducer is coupled with a laser that provides energy. The EAMR transducer also has an ABS that resides in proximity to a media during use. The EAMR transducer includes a waveguide, a write pole to write to a region of the media, coil(s) for energizing the write pole, and a near field transducer (NFT) proximate to the ABS for focusing the energy onto the media. The waveguide includes a mode shift compensator, first and second cladding layers, and a core between the cladding layers. The core directs energy from the laser toward the ABS and has a core index of refraction. The core is also between the mode shift compensator and the NFT. The mode shift compensator has a mode shift compensator index of refraction less than the core index of refraction.
    • 描述了一种用于提供EAMR换能器和其中使用的波导的方法和系统。 EAMR传感器与提供能量的激光器耦合。 EAMR传感器还具有在使用过程中靠近介质的ABS。 EAMR传感器包括波导,写入介质区域的写入极,用于激励写入极的线圈以及靠近ABS的近场换能器(NFT),用于将能量聚焦到介质上。 波导包括模移位补偿器,第一和第二覆层以及覆层之间的芯。 核心将能量从激光器引向ABS并具有核心的折射率。 核心也在模式移位补偿器和NFT之间。 模式移位补偿器具有模式偏移补偿器折射率小于核心折射率。