Parity-Lifted Radiative Degeneracy: Orthogonal Dipoles over Parallel Dipoles in Achiral Dielectric Cavities
Abstract
Parity symmetry enforces radiative degeneracy of parity-conjugated emitters in free space.
We selectively lift this degeneracy in an achiral dielectric cavity via coupling-induced global parity breaking: the cavity and individual dipoles each preserve parity, while their fixed relative orientation breaks global parity, enabling differential decay.
This mechanism exhibits a structure-function trend in marked contrast to the Rosenfeld rule: orthogonal electric-magnetic dipoles yield radiative asymmetry approaching the theoretical limit of 2, whereas parallel ones show negligible differentiation.
A semi-analytical model, validated across multiple modes, confirms generality.
These findings establish a new paradigm for symmetry engineering without intrinsic chirality.
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