1 citations · 1 across the 3 of their papers we have counts for
6 papers
Perfect Absorption in the Strong Coupling Regime via Degenerate Critical Coupling
Eleonora P. Kraus, Jamie M. Fitzgerald, Carlos Maciel-Escudero +1
Perfect absorption (PA) represents a fundamental limit of light-matter interaction and a means to maximize nanoscale energy conversion. While PA is now a well-established phenomeno…
Engineering strong coupling in ultra-compact photonic crystal/2D material platforms
Eleonora P. Kraus, Jamie M. Fitzgerald, Carlos Maciel-Escudero +1
Sub-wavelength thick photonic crystal (PhC) slabs coupled to 2D excitonic materials, such as transition metal dichalcogenides (TMDs), are a promising platform for highly tunable, r…
Exciton Polariton-Polariton Interactions in Transition-Metal Dichalcogenides
Jonas K König, Jamie M Fitzgerald, Daniel Erkensten +1
Microscopic insights into nonlinear interactions are essential for advancing polaritonic devices. Existing studies often rely on phenomenological models that overlook important man…
Polariton transport in 2D semiconductors: Phonon-mediated transitions between ballistic, superdiffusive and exciton-limited regimes
Jamie M. Fitzgerald, Roberto Rosati, Ermin Malic
Exciton transport in 2D semiconductors holds promise for room-temperature, ultra-compact optoelectronic devices, but it is limited by short propagation distances. Hybridization of…
Tuning relaxation and nonlinear upconversion of valley-exciton-polaritons in a monolayer semiconductor
Hangyong Shan, Jamie M. Fitzgerald, Roberto Rosati +9
Controlling exciton relaxation and energy conversion pathways via their coupling to photonic modes is a central task in cavity-mediated quantum materials research. In this context,…
Magneto-Optics of Anisotropic Exciton Polaritons in Two-Dimensional Perovskites
Jonas K. König, Jamie M. Fitzgerald, Ermin Malic
Layered 2D organic-inorganic perovskite semiconductors support strongly confined excitons that offer significant potential for ultrathin polaritonic devices due to their tunability…