SUPA, Physics Department and Institute for Complex Systems and Mathematical Biology, King's College, University of Aberdeen, Aberdeen AB24 3UE, United Kingdom.
Faculty of Information Studies in Novo Mesto, 8000 Novo Mesto, Slovenia.
Phys Rev Lett. 2018 Apr 27;120(17):173901. doi: 10.1103/PhysRevLett.120.173901.
Experimental evidence of an absorbing phase transition, so far associated with spatiotemporal dynamics, is provided in a purely temporal optical system. A bistable semiconductor laser, with long-delayed optoelectronic feedback and multiplicative noise, shows the peculiar features of a critical phenomenon belonging to the directed percolation universality class. The numerical study of a simple, effective model provides accurate estimates of the transition critical exponents, in agreement with both theory and our experiment. This result pushes forward a hard equivalence of nontrivial stochastic, long-delayed systems with spatiotemporal ones and opens a new avenue for studying out-of-equilibrium universality classes in purely temporal dynamics.
实验证据表明,吸收相变与时空动力学有关,目前已在纯时光学系统中得到证实。具有长延迟光电反馈和乘法噪声的双稳半导体激光器显示出属于定向渗流普适类的临界现象的特殊特征。简单有效的模型的数值研究提供了过渡临界指数的精确估计值,与理论和我们的实验结果一致。这一结果推动了非平凡随机、长延迟系统与时空系统之间的等价性,并为研究纯时动力学中的非平衡普适类开辟了新的途径。