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We consider using optomechanical accelerometers as resonant detectors for ultralight dark matter. As a concrete example, we describe a detector based on a silicon nitride membrane fixed to a beryllium mirror, forming an optical cavity. The use of different materials gives access to forces proportional to baryon ( and lepton (L) charge, which are believed to be coupling channels for vector dark matter particles ("dark photons". The cavity meanwhile provides access to quantum-limited displacement measurements. For a centimeter-scale me