Department of Physics and Astronomy, Georgia State University, Atlanta, Georgia 30303, USA.
Phys Rev Lett. 2011 Apr 15;106(15):156802. doi: 10.1103/PhysRevLett.106.156802. Epub 2011 Apr 11.
We demonstrate that the conditions of spaser generation and the full loss compensation in a dense resonant plasmonic-gain medium (metamaterial) are identical. Consequently, attempting the full compensation or overcompensation of losses by gain will lead to instability and a transition to a spaser state. This will limit (clamp) the inversion and lead to the limitation on the maximum loss compensation achievable. The criterion of the loss overcompensation, leading to the instability and spasing, is given in an analytical and universal (independent from system's geometry) form.
我们证明了在密集共振等离子体增益介质(超材料)中,激光激射产生的条件与完全损耗补偿的条件是一致的。因此,通过增益来完全补偿或过度补偿损耗将导致不稳定性,并过渡到激光激射状态。这将限制(钳制)反转,并导致可实现的最大损耗补偿的限制。导致不稳定性和激光激射的损耗过度补偿的判据以分析和通用(与系统几何形状无关)的形式给出。