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Morphologies of Galaxies at $z 9-17$ Uncovered by JWST/NIRCam Imaging: Cosmic Size Evolution and an Identification of an Extremely Compact Bright Galaxy at $z12$

, , , , , , , , , and . (2022)cite arxiv:2208.13582Comment: 26 pages, 23 figures, submitted to ApJ.

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Multi-Hybrid Accelerated Simulation by GPU and FPGA on Radiative Transfer Simulation in Astrophysics., , , , , , and . J. Inf. Process., (2020)Accelerating Space Radiative Transfer on FPGA using OpenCL., , , , , , , and . HEART, page 6:1-6:7. ACM, (2018)GPU-FPGA-accelerated Radiative Transfer Simulation with Inter-FPGA Communication., , , , , , and . HPC Asia, page 117-125. ACM, (2023)Toward OpenACC-enabled GPU-FPGA Accelerated Computing., , , , , and . CLUSTER, page 422-423. IEEE, (2020)Accelerating Radiative Transfer Simulation with GPU-FPGA Cooperative Computation., , , , , , and . ASAP, page 9-16. IEEE, (2020)OpenCL-enabled Parallel Raytracing for Astrophysical Application on Multiple FPGAs with Optical Links., , , , , , and . H2RC@SC, page 48-55. IEEE, (2020)Morphologies of Galaxies at $z 9-17$ Uncovered by JWST/NIRCam Imaging: Cosmic Size Evolution and an Identification of an Extremely Compact Bright Galaxy at $z12$, , , , , , , , , and . (2022)cite arxiv:2208.13582Comment: 26 pages, 23 figures, submitted to ApJ.Accelerating Radiative Transfer Simulation on NVIDIA GPUs with OpenACC., , , , , , and . PDCAT, volume 13798 of Lecture Notes in Computer Science, page 344-358. Springer, (2022)