Chin Sanghoon, Gonzalez-Herraez Miguel, Thevenaz Luc
Ecole Polytechnique Fédérale de Lausanne, STI-GR-SCI Station 11, CH-1015 Lausanne, Switzerland.
Opt Express. 2008 Aug 4;16(16):12181-9. doi: 10.1364/oe.16.012181.
We experimentally demonstrate an extremely simple technique to achieve pulse advancements in optical fibers by using both spontaneous amplified and stimulated Brillouin scattering. It is shown that the group velocity of a light signal is all-optically controlled by its average power while it propagates through an optical fiber. The signal generates an intense back-propagating Stokes emission that causes a loss on the signal through depletion. This narrowband loss gives rise to a fast light propagation at the exact signal frequency. The Stokes emission self-adapts in real time to the Brillouin properties of the fiber and to a wide extent to the signal bandwidth.
我们通过实验证明了一种极其简单的技术,即利用自发放大和受激布里渊散射在光纤中实现脉冲推进。结果表明,光信号在光纤中传播时,其群速度可通过平均功率进行全光控制。该信号会产生强烈的反向传播斯托克斯发射,通过耗尽导致信号损耗。这种窄带损耗在精确的信号频率处引发快速光传播。斯托克斯发射会实时自适应光纤的布里渊特性,并在很大程度上适应信号带宽。