2 resultados para PROSPECTS

em Universidade Complutense de Madrid


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In the last fifteen years a fundamental shift in the strategic balance in Asia – Pacific has taking place. The article aims at discussing the difficulties the Japan-US military Alliance has adaptating to this new regional strategic environment. It also explains the new strategy that President Obama´s Administration is trying to implement, initially called “Pivot to Asia” and later “Rebalance”. The article tries to show the challenges that this new strategy implies for both Japan and the United States, enumerating different scenarios some of them not very likely and highlighting on the contrary the possibility of a more assertive and military independent Japan.

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We describe Janus, a massively parallel FPGA-based computer optimized for the simulation of spin glasses, theoretical models for the behavior of glassy materials. FPGAs (as compared to GPUs or many-core processors) provide a complementary approach to massively parallel computing. In particular, our model problem is formulated in terms of binary variables, and floating-point operations can be (almost) completely avoided. The FPGA architecture allows us to run many independent threads with almost no latencies in memory access, thus updating up to 1024 spins per cycle. We describe Janus in detail and we summarize the physics results obtained in four years of operation of this machine; we discuss two types of physics applications: long simulations on very large systems (which try to mimic and provide understanding about the experimental non equilibrium dynamics), and low-temperature equilibrium simulations using an artificial parallel tempering dynamics. The time scale of our non-equilibrium simulations spans eleven orders of magnitude (from picoseconds to a tenth of a second). On the other hand, our equilibrium simulations are unprecedented both because of the low temperatures reached and for the large systems that we have brought to equilibrium. A finite-time scaling ansatz emerges from the detailed comparison of the two sets of simulations. Janus has made it possible to perform spin glass simulations that would take several decades on more conventional architectures. The paper ends with an assessment of the potential of possible future versions of the Janus architecture, based on state-of-the-art technology.