Direct measurement of the density matrix of a quantum system
arXiv:1604.07917 · doi:10.1103/PhysRevLett.117.120401
Abstract
One drawback of conventional quantum state tomography is that it does not readily provide access to single density matrix elements, since it requires a global reconstruction. Here we experimentally demonstrate a scheme that can be used to directly measure individual density matrix elements of general quantum states. The scheme relies on measuring a sequence of three observables, each complementary to the last. The first two measurements are made weak to minimize the disturbance they cause to the state, while the final measurement is strong. We perform this joint measurement on polarized photons in pure and mixed states to directly measure their density matrix. The weak measurements are achieved using two walk-off crystals, each inducing a polarization-dependent spatial shift that couples the spatial and polarization degree of freedom of the photons. This direct measurement method provides an operational meaning to the density matrix and promises to be especially useful for large dimensional states.
5 pages, 3 figures. Updated and includes SM (6 pages, 2 figures)
References in corpus (8)
- Experimental joint weak measurement on a photon pair as a probe of Hardy's Paradox
- Direct observation of Hardy's paradox by joint weak measurement with an entangled photon pair
- Compressive Direct Measurement of the Quantum Wave Function
- State tomography via weak measurements
- Sequential measurement of conjugate variables as an alternative quantum state tomography
- Quantum optical reconstruction scheme using weak values
- Disturbance in weak measurements and the difference between quantum and classical weak values
- Weak measurement takes a simple form for cumulants
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