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12篇 您的检索式:作者名="RACITI S"
    题名 作者 年代 出处 被引量
1Recent advances in analysis of laminated beams and plates显示文摘KAPANIA K RACITI S 1989Shear Effect and Buckling AIAAJ1989,27,7:1
2Depleted soil carbon and nitrogen pools beneath impervious surfaces显示文摘RACITI S M HUTYRA L R FINZI A C 2012Environmental Pollution2012,164,:1
3JNK2 is activated during ER stress and promotes cell survival 显示文摘Raciti M Lotti L V Valia S 2012Cell Death Dis2012,3,:1
4Accumulation of carbon and nitrogen in residential soils with different land-use histories显示文摘Raciti S M Groffman P M Jenkins J C 2011Ecosystems2011,14,2:1
5Nonlinear vibrations of unsymmetrically laminated beams显示文摘Kapania R K Raciti S 1989AIAA Journal1989,27,2:1
6Depleted soil carbon and nitrogen pools beneath impervious surfaces 显示文摘RACITI S M HUTYRA L R FINZI A C 2012Environmental Pollution2012,164,:1
7Recent advances in analysis of laminated beams and plates--Part Ⅰ:Shear effects and buckling显示文摘Kapania R K Raciti S 1989AIAA Journal1989,27,7:1
8Recent advances in analysis of laminated beams and plates--Part Ⅱ:Vibrations and wave propagation显示文摘Kapania R K Raciti S 1989AIAA Journal1989,27,7:1
9A New Drive Circuits for IGBT Devices显示文摘 MUSUMECI S RACITI A 1995IEEE Trans on Power Electronics1995,10,3:1
10Switching- behavior improvement of insulated gate-controlled devices显示文摘MUSUMECI S RACITI A TESTA A 1997IEEE Transactions on Power Electronics1997,12,4:1
11Depleted soil carbon and nitrogen pools beneath impervious surfaces 显示文摘RACITI S M HUTYRA L R FINZI A C 2012Environmental Pollution2012,164,:1
12Multiscale modeling of ultrafast melting phenomena显示文摘Ultraviolet Nanosecond Laser Annealing(LA)is a powerful tool for both fundamental investigations of ultrafast,nonequilibrium phase-change phenomena and technological applications(e.g.,the processing of 3D sequentially integrated nano-electronic devices)where strongly confined heating and melting is desirable.Optimizing the LA process along with the experimental design is challenging,especially when involving complex 3D-nanostructured systems with various shapes and phases.To this purpose,it is essential to model critical nanoscale physical LA-induced phenomena,such as shape changes or formation and evolution of point and extended defects.To date,LA simulators are based on continuum models,which cannot fully capture the microscopic kinetics of a solid–liquid interface.In this work a fully atomistic LA simulation methodology is presented,based on the parallel coupling of a continuum,finite elements,μm-scale electromagnetic-thermal solver with a super-lattice Kinetic Monte Carlo atomistic model for melting.Benchmarks against phase-field models and experimental data validate the approach.LA of a Si(001)surface is studied varying laser fluence and pulse shape,assuming both homogeneous and inhomogeneous nucleation,revealing how liquid Si nuclei generate,deform and coalesce during irradiation.The proposed methodology is applicable to any system where the atom kinetics is determined by a strongly space-and time-dependent field,such as temperature or strain.Gaetano Calogero Domenica Raciti Pablo Acosta-Alba Fuccio Cristiano Ioannis Deretzis Giuseppe Fisicaro Karim Huet Sébastien Kerdilès Alberto Sciuto Antonino La Magna 2022npj Computational Materials2022,,1:0
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