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At this point, a S¸ one-clickTˇ GATE simulation is made possible for the user who does not have to be aware of grid internals as shown in Fig 2. Fig. 2. GATE-Lab - create new simulation. Starting from the main macro ﬁle, the client checks the simulation parameters, looks for all local inputs ﬁles, bundles them into an archive and uploads it to the grid. Running GATE simulations on the grid is possible with a few clicks. The number of parallel tasks to submit to the grid is automatically determined based on the end user estimation of the total CPU time needed for the complete simulation.
11: 034016. -Q. -M. (2010). Experimental generation of Laguerre-Gaussian beam using digital micromirror device, Appl. Opt. 49(10): 1838–1844. , Li, H. -M. (2010). Stability of novel time-sharing dual optical tweezers using a rotating tilt glass plate, Chinese Physics Letters 27(2): 028703. -C. -M. (2010). Monte carlo simulation of effective stiffness of time-sharing optical tweezers, Chinese Optics Letters 8(2): 170–172. -Q. -M. (2010). Experimental generation of Laguerre-Gaussian beam using angular diffraction of binary phase plate, Acta Physica Sinica(In Chinese) 59(6): 3930–3935.
Indeed, GATE is designed for a wide range of purposes in the ﬁelds of PET, SPECT or CT imaging, and radiation therapy, including hadrontherapy. The end user in our case is not the medical physicist sending a treatment plan to be computed, but the researcher who provides a ﬁle of macros describing a simulation. The research community behind the GATE simulator needs to execute various GATE simulations easily and rapidly without worrying about the computing resources provided by the European Grid Infrastructure.