“非法操作”(illegal operation)几乎是每个以Windows作为操作系统的计算机用户都会碰到的一个误操作提示。“illegal”在此是什么意思?它是否真的表示我们通常所理解的“不合法”之意呢?其实,在计算机术语里,“illegal”有特定的含...“非法操作”(illegal operation)几乎是每个以Windows作为操作系统的计算机用户都会碰到的一个误操作提示。“illegal”在此是什么意思?它是否真的表示我们通常所理解的“不合法”之意呢?其实,在计算机术语里,“illegal”有特定的含义,即“not interpretable or.recognized in the system in which it occurs”,展开更多
A novel dual-wavelength fiber laser with asymmetric fiber Bragg grating(FBG) Fabry-Perot(FP) cavity is proposed and experimentally demonstrated. A couple of uniform FBGs are used as the cavity mirrors, and the third F...A novel dual-wavelength fiber laser with asymmetric fiber Bragg grating(FBG) Fabry-Perot(FP) cavity is proposed and experimentally demonstrated. A couple of uniform FBGs are used as the cavity mirrors, and the third FBG is used as intracavity wavelength selector by changing its operation temperature. Experimental results show that by adjusting the operation temperature of the intracavity wavelength selector, a tunable dual-wavelength laser emission can be achieved. The results demonstrate the new concept of dual-wavelength lasing with asymmetric FBG FP resonator and its technical feasibility.展开更多
文摘“非法操作”(illegal operation)几乎是每个以Windows作为操作系统的计算机用户都会碰到的一个误操作提示。“illegal”在此是什么意思?它是否真的表示我们通常所理解的“不合法”之意呢?其实,在计算机术语里,“illegal”有特定的含义,即“not interpretable or.recognized in the system in which it occurs”,
基金supported by the National Natural Science Foundation of China(No.60777020)the Hubei Provincial Natural Science Foundation of China(No.2008CDB317)the Innovation Project of Hubei Provincial Department of Education of China(No.2012344/104892013043)
文摘A novel dual-wavelength fiber laser with asymmetric fiber Bragg grating(FBG) Fabry-Perot(FP) cavity is proposed and experimentally demonstrated. A couple of uniform FBGs are used as the cavity mirrors, and the third FBG is used as intracavity wavelength selector by changing its operation temperature. Experimental results show that by adjusting the operation temperature of the intracavity wavelength selector, a tunable dual-wavelength laser emission can be achieved. The results demonstrate the new concept of dual-wavelength lasing with asymmetric FBG FP resonator and its technical feasibility.