Radwell Neal, Rose Patrick, Cleff Carsten, Denz Cornelia, Ackemann Thorsten
Department of Physics and SUPA, University of Strathclyde, John Anderson Building, 107 Rottenrow East, Glasgow G4 0NG, UK.
Opt Express. 2010 Oct 25;18(22):23121-32. doi: 10.1364/OE.18.023121.
Dissipative solitons are self-localized states which can exist anywhere in a system with translational symmetry, but in real systems this translational symmetry is usually broken due to parasitic inhomogeneities leading to spatial disorder, pinning the soliton positions. We discuss the effects of semiconductor growth induced spatial disorder on the operation of a cavity soliton laser based on a vertical-cavity surface-emitting laser (VCSEL). We show that a refractive index variation induced by an external, suitably spatially modulated laser beam can be used to counteract the inherent disorder. In particular, it is demonstrated experimentally that the threshold of one cavity soliton can be lowered without influencing other cavity solitons making two solitons simultaneously bistable which were not without control. This proof of principle paves the way to achieve full control of large numbers of cavity solitons at the same time.
耗散孤子是自局域态,它可以存在于具有平移对称性的系统中的任何位置,但在实际系统中,由于寄生不均匀性导致空间无序,使孤子位置被固定,这种平移对称性通常会被破坏。我们讨论了半导体生长引起的空间无序对基于垂直腔面发射激光器(VCSEL)的腔孤子激光器运行的影响。我们表明,由外部适当空间调制的激光束引起的折射率变化可用于抵消固有无序。特别是,实验证明,一个腔孤子的阈值可以降低,而不影响其他腔孤子,使两个孤子同时双稳,而在此之前是无法控制的。这一原理证明为同时实现对大量腔孤子的完全控制铺平了道路。