Fig. 1: Simulation and theoretical results for a microcavity with two scatterers. | Communications Physics

Fig. 1: Simulation and theoretical results for a microcavity with two scatterers.

From: Non-orthogonal cavity modes near exceptional points in the far field

Fig. 1

a Illustration of a microdisk integrated with two holes. b Simulated near-field ∣E∣ distribution of two modes close to an EP with β ≈ 172.44°. Here r1 = 0.037285 μm, r2 = 0.03203 μm, d1 = 0.73312 μm, d2 = 0.74995 μm. Theoretical (solid lines) and simulated (dots) complex frequencies of two modes respectively colored in green and orange with their real parts (c) and imaginary parts (d). e, f Magnified regions labeled by dashed squares in c and d. g \(\cos ({\theta }_{eigm})\) (solid black line) and \({S}_{{H}_{z}}\) varying with β for two different holes (green dots) and two identical holes (blue dots).

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