A unified first-principles theory shows far-field spatial coherence from dissipative objects as algebraic superposition of elastic scattering and thermal emission mechanisms under quantum illumination.
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Far-field spatial coherence driven by lossy objects: first-principles approach unifying scattering of quantum light and thermal emission
A unified first-principles theory shows far-field spatial coherence from dissipative objects as algebraic superposition of elastic scattering and thermal emission mechanisms under quantum illumination.