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Injection-locking efficiency of two independent lasers

机译:两个独立激光器的注射效率

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Bidirectional (mutual) injection locking was demonstrated with solid-state lasers, producing significant improvements over traditional single-direction injection locking. Each laser element shares part of its output with other elements in bidirectional locking, distinct from single-direction (traditional) injection locking where one master laser provides the locking signal for a number of slaves. In a phase-locked array, the individual laser outputs add coherently, and the brightness of the entire array scales with the square of the number of elements, as if the active material diameter were increasing. Benefits of bidirectional locking, when compared to traditional injection locking, include reduced laser threshold, better output beam quality, and improved scaling capability. Experiments using two Nd:YVO4 lasers confirmed that mutual injection locking reduced lasing threshold by a factor of at least two and increased the output beam quality significantly. The injection locking effects began with 0.03% coupling between lasers and full-phase locking for coupling exceeding 0.5%. The 0.5% requirement for full phase-locking limits traditional injection-locked arrays to fewer than 100 elements, while mutually injection-locked arrays have no such limit. Mutual injection locking of an array of lasers can lead to a new architecture for high-power laser systems.
机译:双向(相互)注入锁定用固态激光器证实,产生比传统的单方向注入锁定显著改进。它与在双向锁紧其它元件,从单方向(传统)注入锁定,其中一个主激光器提供了许多从站的锁定信号不同输出的各激光元件股票。在锁相阵列,单独的激光输出添加相干,并用元件的数量的平方整个阵列秤的亮度,因为如果活性材料直径都在增加。双向锁定的好处,当相比于传统的注入锁定,包括降低激光的阈值,更好的输出光束质量和改进的缩放的能力。使用两个实验的Nd:YVO4激光器确认相互注入锁定由至少两个的因子减小激光阈值和显著增加输出光束质量。注入锁定效果开始与激光器和全相锁定之间0.03%的耦合,用于耦合超过0.5%。用于全相位锁定范围的0.5%的要求传统的注入锁定阵列少于100个元件,而相互注入锁定阵列没有这样的限制。激光器阵列的相互注入锁定可以导致用于高功率激光系统的新架构。

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