3,263 research outputs found

    Universal and deterministic manipulation of the quantum state of harmonic oscillators: a route to unitary gates for Fock State qubits

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    We present a simple quantum circuit that allows for the universal and deterministic manipulation of the quantum state of confined harmonic oscillators. The scheme is based on the selective interactions of the referred oscillator with an auxiliary three-level system and a classical external driving source, and enables any unitary operations on Fock states, two-by-two. One circuit is equivalent to a single qubit unitary logical gate on Fock states qubits. Sequences of similar protocols allow for complete, deterministic and state-independent manipulation of the harmonic oscillator quantum state.Comment: 4 pages, 4 figure

    Sterilization, State Action, and the Concept ofConsent

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    Sterilization, State Action, and the Concept ofConsent

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    A line demarking the propriety of state intervention into the lives of individuals has never been adequately drawn. It is not surprising that such a line is practically nonexistent, from the point of view of legal analysis, when the people subject to intervention are considered mentally retarded. Too infrequently the medical and privacy rights of these individuals go unrecognized and unheeded. There are several factors which collectively account for this

    Diclidophora nezumiae sp. n. (Monogenea: Diclidophoridae) and Its Ecological Relationships with the Macrourid Fish Nezumia bairdii (Goode and Bean, 1877)

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    Diclidophora nezumiae sp. n. is described from the gills of the rat-tail fish Nezumia bairdii (Goode and Bean, 1877) taken from the environs of Hudson Submarine Canyon in the northwest Atlantic. The host-parasite relationships were studied in the host population. The new species is most similar to small species of Diclidophora having short bodies that taper to maximum width at the level of the first pair of clamps. It may be differentiated from other species by the following: clamps wider than long, noticeably decreasing in size posteriorly; lamellate extension of sclerite b does not fuse with sclerite c1; unsclerotized diaphragm; a relatively small clamp sucker; 10-13 cirrus hooks; 10-30 intercecal, postovarian testes; Unilobed seminal receptacle; filamented eggs; and body dimensions. Of 378 N. bairdii specimens examined, 106 (28%) were infected with 1-21 D. nezumiae per host. The parasite occurred most frequently on filaments of the first gill arch. Infected fish ranged from 61-428mm in total length. They were collected at depths of 300-1900 m. Both incidence and intensity of infection were greater for hosts collected between 700- 1000 m. Depth of capture of the host was more strongly correlated with fish abundance than with fish size

    Preparation of feeds for dairy cows

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    Photon collection from a trapped ion--cavity system

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    We present the design and implementation of a trapped ion cavity QED system. A single ytterbium ion is confined by a micron-scale ion trap inside a 2 mm optical cavity. The ion is coherently pumped by near resonant laser light while the cavity output is monitored as a function of pump intensity and cavity detuning. We observe a Purcell enhancement of scattered light into the solid angle subtended by the optical cavity, as well as a three-peak structure arising from strongly driving the atom. This system can be integrated into existing atom{photon quantum network protocols and is a pathway towards an efficient atom{photon quantum interface

    The Effect of Prolonged Standing on Touch Sensitivity Threshold of the Foot: A Pilot Study

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    Peer Reviewedhttps://deepblue.lib.umich.edu/bitstream/2027.42/146943/1/pmr2117.pd

    Preparing encoded states in an oscillator

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    Recently a scheme has been proposed for constructing quantum error-correcting codes that embed a finite-dimensional code space in the infinite-dimensional Hilbert space of a system described by continuous quantum variables. One of the difficult steps in this scheme is the preparation of the encoded states. We show how these states can be generated by coupling a continuous quantum variable to a single qubit. An ion trap quantum computer provides a natural setting for a continuous system coupled to a qubit. We discuss how encoded states may be generated in an ion trap.Comment: 5 pages, 4 figures, RevTe
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