School of Physics and Astronomy, University of Southampton, Southampton, SO17 1BJ, UK.
Nat Commun. 2017 Nov 13;8(1):1465. doi: 10.1038/s41467-017-01504-5.
Much of the novel physics predicted to be observable in the ultrastrong light-matter coupling regime rests on the hybridisation between states with different numbers of excitations, leading to a population of virtual photons in the system's ground state. In this article, exploiting an exact diagonalisation approach, we derive both analytical and numerical results for the population of virtual photons in presence of arbitrary losses. Specialising our results to the case of Lorentzian resonances we then show that the virtual photon population is only quantitatively affected by losses, even when those become the dominant energy scale. Our results demonstrate most of the ultrastrong-coupling phenomenology can be observed in loss-dominated systems which are not even in the standard strong coupling regime. We thus open the possibility to investigate ultrastrong-coupling physics to platforms that were previously considered unsuitable due to their large losses.
许多在超强光物质耦合条件下可观测到的新物理现象都基于不同激发数态之间的杂交,导致系统基态中存在虚拟光子。在本文中,我们利用精确对角化方法,推导出存在任意损耗时虚拟光子数的解析和数值结果。将结果专门应用于洛伦兹共振的情况,然后表明,即使在损耗成为主导能量尺度的情况下,虚拟光子数仅受到定量影响。我们的结果表明,大部分超强耦合现象都可以在损耗主导的系统中观察到,而这些系统甚至不在标准强耦合范围内。因此,我们为那些由于损耗较大而之前被认为不适合的平台提供了研究超强耦合物理的可能性。