Lemasters Robert, Manjare Manoj, Freeman Ryan, Wang Feng, Pierce Luka Guy, Hua Gordon, Urazhdin Sergei, Harutyunyan Hayk
Department of Physics, Emory University, Atlanta, GA, 30322, USA.
Nat Commun. 2024 May 25;15(1):4468. doi: 10.1038/s41467-024-48928-4.
Photoluminescence from spatially inhomogeneous plasmonic nanostructures exhibits fascinating wavelength-dependent nonlinear behaviors due to the intraband recombination of hot electrons excited into the conduction band of the metal. The properties of the excited carrier distribution and the role of localized plasmonic modes are subjects of debate. In this work, we use plasmonic gap-mode resonators with precise nanometer-scale confinement to show that the nonlinear photoluminescence behavior can become dominated by non-thermal contributions produced by the excited carrier population that strongly deviates from the Fermi-Dirac distribution due to the confinement-induced large-momentum free carrier absorption beyond the dipole approximation. These findings open new pathways for controllable light conversion using nonequilibrium electron states at the nanoscale.
由于激发到金属导带中的热电子的带内复合,来自空间不均匀等离子体纳米结构的光致发光表现出引人入胜的波长依赖性非线性行为。激发载流子分布的性质以及局域等离子体模式的作用是有争议的话题。在这项工作中,我们使用具有精确纳米级限制的等离子体间隙模式谐振器来表明,非线性光致发光行为可以由激发载流子群体产生的非热贡献主导,由于超出偶极近似的限制诱导的大动量自由载流子吸收,该载流子群体强烈偏离费米-狄拉克分布。这些发现为利用纳米尺度的非平衡电子态进行可控光转换开辟了新途径。