Optimal quantum-enhanced interferometry

Matthias Lang, Carlton M. Caves · Physical Review A · 2014

We analyze the ultimate bounds on the phase sensitivity of an interferometer, given the constraint that the state input to the interferometer's initial 50:50 beam splitter $B$ is a product state of the two input modes. Requiring a product state is a natural restriction: If one were allowed to input an arbitrary, entangled two-mode state $|\ensuremath{\Xi}\ensuremath{\rangle}$ to the beam splitter, one could generally just as easily input the state $B|\ensuremath{\Xi}\ensuremath{\rangle}$ directly into the two modes after the beam splitter, thus rendering the beam splitter unnecessary. We find optimal states for a fixed photon number and for a fixed mean photon number.

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