16,343 research outputs found

    An Auto-Parallelizer for Distributed Computing in Haskell

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    One of the main challenges in distributed computing is building interfaces and APIs that allow programmers with limited background in distributed systems to write scalable, performant, and fault-tolerant applications on large clusters. In this demonstration, we designed and implemented a Haskell auto-parallelizer with a simple yet powerful interface by taking advantage of the default purity of Haskell functions. Finally, we benchmarked our implementation on a set of examples to illustrate the potential for future work in this direction.Comment: 2 pages excluding title page and reference page. 2 figures. This work was submitted to the 28th ACM SIGPLAN International Conference on Functional Programming, Haskell Symposium. This work was accepted for oral presentation and was presented on Sep 8, 202

    Submillimeter/millimeter observations of the high-mass star forming region IRAS 22506+5944

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    The mapping observations of CO J=2βˆ’1J=2-1, CO J=3βˆ’2J=3-2, 13^{13}CO J=2βˆ’1J=2-1 and 13^{13}CO J=3βˆ’2J=3-2 lines in the direction of IRAS 22506+5944 have been made. The results show that the cores in the J=2βˆ’1J=2-1 transition lines have a similar morphology to those in the J=3βˆ’2J=3-2 transition lines. Bipolar molecular outflows are verified. The prior IRAS 22506+5944 observations indicated that two IRAS sources and three H2_{2}O masers were located close to the peak position of the core. One of the IRAS sources may be the driving source of the outflows. In addition, the H2_{2}O masers may occur in relatively warm environments. The parameters of the dense core and outflow, obtained by the LTE method, indicate that IRAS 22506+5944 is a high-mass star formation region.Comment: 8 pages, 4 figures, published in RA
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