6,194 research outputs found

    Exploring CP Violation with B_d -> D K_s Decays

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    We (re)examine CP violation in the decays B_d -> D K_s, where D represents D^0, D(bar), or one of their excited states. The quantity sin⁥2(2ÎČ+Îł)\sin^2(2\beta + \gamma) can be extracted from the time-dependent rates for Bd(t)−>Dˉ∗∗0KsB_d(t) -> {\bar D}^{**0} K_s and Bd(t)−>D∗∗0KsB_d(t) -> D^{**0} K_s, where the D∗∗0D^{**0} decays to D(∗)+π−D^{(*)+}\pi^-. If one considers a non-CP-eigenstate hadronic final state to which both D(bar) and D^0 can decay (e.g. K+π−K^+\pi^-), then one can obtain two of the angles of the unitarity triangle from measurements of the time-dependent rates for Bd(t)−>(K+π−)DKsB_d(t) -> (K^+\pi^-)_{D K_s} and Bd(t)−>(K−π+)DKsB_d(t) -> (K^-\pi^+)_{D K_s}. There are no penguin contributions to these decays, so all measurements are theoretically clean.Comment: 15 pages, LaTeX, no figure

    The two-fluid model with superfluid entropy

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    The two-fluid model of liquid helium is generalized to the case that the superfluid fraction has a small entropy content. We present theoretical arguments in favour of such a small superfluid entropy. In the generalized two-fluid model various sound modes of He  \;II are investigated. In a superleak carrying a persistent current the superfluid entropy leads to a new sound mode which we call sixth sound. The relation between the sixth sound and the superfluid entropy is discussed in detail.Comment: 22 pages, latex, published in Nuovo Cimento 16 D (1994) 37

    Single WRW_R Production in e−e−e^-e^- Collisions at the NLC

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    Single WRW_R production in e−e−e^-e^- collisions at the NLC can be used to probe the Majorana nature of the heavy neutrinos present in the Left-Right Symmetric Model below the kinematic threshold for their direct production. For colliders in the s=1−1.5\sqrt {s}=1-1.5 TeV range, typical cross sections of order 1−10fb1-10 fb are obtained, depending on the specific choice of model parameters. Backgrounds arising from Standard Model processes are shown to be small. This analysis greatly extends the kinematic range of previous studies wherein the production of an on-shell, like-sign pair of WRW_R's at the NLC was considered.Comment: 13pp, 3 figures (available on request), LaTex, SLAC-PUB-647

    Understanding lean implementation: Perspectives and approaches of an American construction organisation

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    Lean, its principles and implementation rationale are characteristically interpreted as a means to reduce waste and increase productivity. Representation of the approach is typically supported by deductive perspectives. Deductive representations of the decision rationale underpinning lean implementation in construction organisations is cause for concern; particularly in understanding culturally the principles guiding lean implementation and the impact on management, contractual relationships and the organisational environment. A qualitative methodological and inductive approach encompassing face-to-face and focus group interviews has been used to explore lean rationale, implementation and practice within a singular in-depth case study. The analysis of the case has identified two further emerging lean perspectives and approaches of lean implementation that assist in addressing cultural neglect within lean theory. The first is the implementation of lean as means to establish efficient, effective and meaningful industry and contracting relationships. The second is the implementation of lean as a means to improve internal organisational and managerial practice. The study highlights the importance and need to understand the lean implementation process within construction organisations culturally rather than a process of tool implementation versus cultural change

    Response of thin-film SQUIDs to applied fields and vortex fields: Linear SQUIDs

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    In this paper we analyze the properties of a dc SQUID when the London penetration depth \lambda is larger than the superconducting film thickness d. We present equations that govern the static behavior for arbitrary values of \Lambda = \lambda^2/d relative to the linear dimensions of the SQUID. The SQUID's critical current I_c depends upon the effective flux \Phi, the magnetic flux through a contour surrounding the central hole plus a term proportional to the line integral of the current density around this contour. While it is well known that the SQUID inductance depends upon \Lambda, we show here that the focusing of magnetic flux from applied fields and vortex-generated fields into the central hole of the SQUID also depends upon \Lambda. We apply this formalism to the simplest case of a linear SQUID of width 2w, consisting of a coplanar pair of long superconducting strips of separation 2a, connected by two small Josephson junctions to a superconducting current-input lead at one end and by a superconducting lead at the other end. The central region of this SQUID shares many properties with a superconducting coplanar stripline. We calculate magnetic-field and current-density profiles, the inductance (including both geometric and kinetic inductances), magnetic moments, and the effective area as a function of \Lambda/w and a/w.Comment: 18 pages, 20 figures, revised for Phys. Rev. B, the main revisions being to denote the effective flux by \Phi rather than

    B-Decay CP Asymmetries, Discrete Ambiguities and New Physics

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    The first measurements of CP violation in the BB system will likely probe sin⁥2α\sin 2\alpha, sin⁥2ÎČ\sin 2\beta and cos⁥2Îł\cos 2\gamma. Assuming that the CP angles α\alpha, ÎČ\beta and Îł\gamma are the interior angles of the unitarity triangle, these measurements determine the angle set (α,ÎČ,Îł)(\alpha,\beta,\gamma) except for a twofold discrete ambiguity. If one allows for the possibility of new physics, the presence of this discrete ambiguity can make its discovery difficult: if only one of the two candidate solutions is consistent with constraints from other measurements in the BB and KK systems, one is not sure whether new physics is present or not. We review the methods used to resolve the discrete ambiguity and show that, even in the presence of new physics, they can usually be used to uncover this new physics. There are some exceptions, which we describe in detail. We systematically scan the parameter space and present examples of values of (α,ÎČ,Îł)(\alpha,\beta,\gamma) and the new-physics parameters which correspond to all possibilities. Finally, we show that if one relaxes the assumption that the bag parameters \BBd and \BK are positive, one can no longer definitively establish the presence of new physics.Comment: 29 pages, LaTeX, 1 figures, presentation substantially reworked, physics conclusions unchanged. This version will be published in Phys. Rev.

    Observation of Superfluid Flow in a Bose-Einstein Condensed Gas

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    We have studied the hydrodynamic flow in a Bose-Einstein condensate stirred by a macroscopic object, a blue detuned laser beam, using nondestructive {\em in situ} phase contrast imaging. A critical velocity for the onset of a pressure gradient has been observed, and shown to be density dependent. The technique has been compared to a calorimetric method used previously to measure the heating induced by the motion of the laser beam.Comment: 4 pages, 5 figure

    Repulsive Casimir forces

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    We discuss repulsive Casimir forces between dielectric materials with non trivial magnetic susceptibility. It is shown that considerations based on naive pair-wise summation of Van der Waals and Casimir Polder forces may not only give an incorrect estimate of the magnitude of the total Casimir force, but even the wrong sign of the force when materials with high dielectric and magnetic response are involved. Indeed repulsive Casimir forces may be found in a large range of parameters, and we suggest that the effect may be realized in known materials. The phenomenon of repulsive Casimir forces may be of importance both for experimental study and for nanomachinery applications
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