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Biomedical subjects

B Reznik

Publications and source records attributed to B Reznik.

13 recordsLinked to original sources

Deterministic linear optics quantum computation with single photon qubits.

We suggest an efficient scheme for quantum computation with linear optical elements, where the qubits are encoded in single photon states. The scheme reduces the resources required per logical gate by several orders of magnitude, compared to an earlier proposal of Knill, Laflamme, and Milburn, while the resource overhead per gate is independent of the length of the computation. A central feature of the scheme, enabling these improvements, is the prior construction of a "linked" photon state designed according to the particular quantum circuit one wishes to process. Once this state has been successfully prepared, the computation is pursued deterministically by a sequence of teleportation steps.

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Cross-section preparation for transmission electron microscopy of phases and interfaces in C/BN heterostructures.

A technique is described for the preparation of transmission electron microscopy cross-sectional samples of pyrolytical carbon layers deposited on polycrystalline boron nitride substrates. To solve the problem of different abrasion rates of C and BN a filler material, Si wafers, has been bonded to both sides of the pre-thinned BN substrate. Correspondence between color and thickness of Si wafers facilitates controlled sample thickness reduction during dimpling. The samples prepared by this technique even without ion milling are thin enough for HRTEM studies.

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Complementarity between local and nonlocal topological effects

In certain topological effects the accumulation of a quantum phase shift is accompanied by a local observable effect. We show that such effects manifest a complementarity between nonlocal and local attributes of the topology, which is reminiscent but different from the usual wave-particle complementarity. This complementarity is not a consequence of noncommutativity, rather it is due to the noncanonical nature of the observables. We suggest that a local/nonlocal complementarity is a general feature of topological effects that are "dual" to the Aharonov-Bohm effect.

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"Weighing" a closed system and the time-energy uncertainty principle

A gedanken experiment is proposed for "weighing" the total mass of a closed system from within the system. We prove that for an internal observer the time tau, required to measure the total energy with accuracy DeltaE, is bounded according to tauDeltaE>Planck's over 2pi. This time-energy uncertainty principle for a closed system follows from the measurement backreaction on the system. We generally examine what other conserved observables are in principle measurable within a closed system and what are the corresponding uncertainty relations.

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