3,722 research outputs found

    Propellant transfer: Attached depot

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    Propellant transfer at an attached depot involves: (1) resupply tankers (dedicated launch from the ground or scavenging from the external tank) to resupply the depot; (2) depot storage and supply tanks (attached, free-flyer, or tethered) from which liquid hydrogen and liquid oxygen are transferred to fill the space-based OTV; and (3) the space-based OTV which is resupplied with cryogens from the depot. Liquid storage and supply, thermal control, and transfer/resupply requirements for an attached depot are listed, and technologies defined. The specific fluid management elements and approaches for an attached depot are enumerated. The cryogenic fluid management facility (CFMF) shuttle attached-payload test bed, scheduled for a mid-1988 first launch, is expected to provide much of the needed technology

    String theory on AdS3\boldsymbol{\text{AdS}_{\mathbf{3}}} and the symmetric orbifold of Liouville theory

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    For string theory on AdS3_3 with pure NS-NS flux a complete set of DDF operators is constructed, from which one can read off the symmetry algebra of the spacetime CFT. Together with an analysis of the spacetime spectrum, this allows us to show that the CFT dual of superstring theory on AdS3×S3×T4{\rm AdS}_3 \times {\rm S}^3 \times \mathbb{T}^4 for generic NS-NS flux is the symmetric orbifold of (N=4({\cal N}=4 Liouville theory)×T4)\times \mathbb{T}^4. For the case of minimal flux (k=1k=1), the Liouville factor disappears, and we just obtain the symmetric orbifold of T4\mathbb{T}^4, thereby giving further support to a previous claim. We also show that a similar analysis can be done for bosonic string theory on AdS3×X{\rm AdS}_3 \times X.Comment: 33+10 page

    Strings on AdS3×S3×S3×S1\text{AdS}_3 \times \text{S}^3 \times \text{S}^3 \times \text{S}^1

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    String theory on AdS3×S3×S3×S1{\rm AdS}_3 \times {\rm S}^3 \times {\rm S}^3 \times {\rm S}^1 with pure NS-NS flux and minimal flux through one of the two S3{\rm S}^3's is studied from a world-sheet perspective. It is shown that the spacetime spectrum, as well as the algebra of spectrum generating operators, matches precisely that of the symmetric orbifold of S3×S1{\rm S}^3\times \mathrm{S}^1 in the large NN limit. This gives strong support for the proposal that these two descriptions are exactly dual to one another.Comment: 25+23 page

    Multiple jet study data correlations

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    Correlations are presented which allow determination of penetration and mixing of multiple cold air jets injected normal to a ducted subsonic heated primary air stream. Correlations were obtained over jet-to-primary stream momentum flux ratios of 6 to 60 for locations from 1 to 30 jet diameters downstream of the injection plane. The range of geometric and operating variables makes the correlations relevant to gas turbine combustors. Correlations were obtained for the mixing efficiency between jets and primary stream using an energy exchange parameter. Also jet centerplane velocity and temperature trajectories were correlated and centerplane dimensionless temperature distributions defined. An assumption of a Gaussian vertical temperature distribution at all stations is shown to result in a reasonable temperature field model. Data are presented which allow comparison of predicted and measured values over the range of conditions specified above

    The Worldsheet Dual of the Symmetric Product CFT

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    Superstring theory on AdS3×S3×T4{\rm AdS}_3\times {\rm S}^3\times \mathbb{T}^4 with the smallest amount of NS-NS flux (`k=1k=1') is shown to be dual to the spacetime CFT given by the large NN limit of the free symmetric product orbifold SymN(T4)\mathrm{Sym}^N(\mathbb{T}^4). To define the worldsheet theory at k=1k=1, we employ the hybrid formalism in which the AdS3×S3{\rm AdS}_3\times {\rm S}^3 part is described by the psu(1,1∣2)1\mathfrak{psu}(1,1|2)_1 WZW model (which is well defined). Unlike the case for k≥2k\geq2, it turns out that the string spectrum at k=1k=1 does {\it not} exhibit the long string continuum, and perfectly matches with the large NN limit of the symmetric product. We also demonstrate that the fusion rules of the symmetric orbifold are reproduced from the worldsheet perspective. Our proposal therefore affords a tractable worldsheet description of a tensionless limit in string theory, for which the dual CFT is also explicitly known.Comment: 29+24 page

    Higher spin algebras and large N=4\mathcal{N}=4 holography

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    A new family of higher spin algebras that arises upon restricting matrix extensions of shs[λ]\mathfrak{shs}[\lambda] is found. We identify coset CFTs realising these symmetry algebras, and thus propose new higher spin-CFT dual pairs. These higher spin theories arise naturally as a subsector of string theory on AdS3×S3×S3×S1{\rm AdS}_3\times {\rm S}^3 \times {\rm S}^3 \times {\rm S}^1 for specific ratios of the radii of the two spheres.Comment: 22 page

    A holographic dual for string theory on AdS3×S3×S3×S1\mathrm{AdS}_3 \times \mathrm{S}^3 \times \mathrm{S}^3 \times \mathrm{S}^1

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    The CFT dual of string theory on AdS3×S3×S3×S1\mathrm{AdS}_3 \times \mathrm{S}^3 \times \mathrm{S}^3 \times \mathrm{S}^1 is conjectured to be the symmetric orbifold of the Sκ\mathcal{S}_\kappa theory, provided that one of the two Q5±Q_5^\pm quantum numbers is a multiple of the other. We determine the BPS spectrum of the symmetric orbifold in detail, and show that it reproduces precisely the BPS spectrum that was recently calculated in supergravity. We also determine the BPS spectrum of the world-sheet theory that is formulated in terms of WZW models, and show that, apart from some gaps (which are reminiscent of those that appear in the corresponding T4\mathbb{T}^4 calculation), it also reproduces this BPS spectrum. In fact, the matching seems to work as well as for the familiar T4\mathbb{T}^4 case, and thus our results give strong support for this proposal.Comment: 41 pages, 2 figure

    Research in the development of an improved multiplier phototube Final report

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    Counting efficiency, noise factor measurement, dark noise, gain and counting rate, optical enhancemen

    Conceptual design and analysis of orbital cryogenic liquid storage and supply systems

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    A wide variety of orbital cryogenic liquid storage and supply systems are defined in NASA and DOD long-range plans. These systems include small cooling applications, large chemical and electrical orbit transfer vehicles and supply tankers. All have the common requirements of low-g fluid management to accomplish gas-free liquid expulsion and efficient thermal control to manage heat leak and tank pressure. A preliminary design study was performed to evaluate tanks ranging from 0.6 to 37.4 cu m (22 to 1320 cu ft). Liquids of interest were hydrogen, oxygen, methane, argon and helium. Conceptual designs were generated for each tank system and fluid dynamic, thermal and structural analyses were performed for Shuttle compatible operations. Design trades considered the paradox of conservative support structure and minimum thermal input. Orbital performance and weight data were developed, and a technology evaluation was completed

    Transient heat and mass transfer analysis of supercritical cryogenic storage systems with spherical static heaters Final report

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    Transient heat and mass transfer analysis of supercritical cryogenic storage systems with spherical static heaters by computer progra
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