Implicit-explicit Runge--Kutta schemes for hyperbolic systems and kinetic equations in the diffusion limit S Boscarino, L Pareschi, G Russo SIAM Journal on Scientific Computing 35 (1), A22-A51, 2013 | 198 | 2013 |
Error analysis of IMEX Runge–Kutta methods derived from differential-algebraic systems S Boscarino SIAM Journal on Numerical Analysis 45 (4), 1600-1621, 2007 | 157 | 2007 |
High order semi-implicit schemes for time dependent partial differential equations S Boscarino, F Filbet, G Russo Journal of Scientific Computing 68, 975-1001, 2016 | 147 | 2016 |
On a class of uniformly accurate IMEX Runge–Kutta schemes and applications to hyperbolic systems with relaxation S Boscarino, G Russo SIAM Journal on Scientific Computing 31 (3), 1926-1945, 2009 | 135 | 2009 |
All Mach number second order semi-implicit scheme for the Euler equations of gas dynamics S Boscarino, G Russo, L Scandurra Journal of Scientific Computing 77 (2), 850-884, 2018 | 80 | 2018 |
On an accurate third order implicit-explicit Runge–Kutta method for stiff problems S Boscarino Applied Numerical Mathematics 59 (7), 1515-1528, 2009 | 74 | 2009 |
Linearly implicit IMEX Runge--Kutta methods for a class of degenerate convection-diffusion problems S Boscarino, R Bürger, P Mulet, G Russo, LM Villada SIAM Journal on Scientific Computing 37 (2), B305-B331, 2015 | 71 | 2015 |
High-order asymptotic-preserving methods for fully nonlinear relaxation problems S Boscarino, PG LeFloch, G Russo SIAM Journal on Scientific Computing 36 (2), A377-A395, 2014 | 68 | 2014 |
A unified IMEX Runge--Kutta approach for hyperbolic systems with multiscale relaxation S Boscarino, L Pareschi, G Russo SIAM Journal on Numerical Analysis 55 (4), 2085-2109, 2017 | 56 | 2017 |
Flux-explicit IMEX Runge--Kutta schemes for hyperbolic to parabolic relaxation problems S Boscarino, G Russo SIAM Journal on Numerical Analysis 51 (1), 163-190, 2013 | 54 | 2013 |
A high order semi-implicit IMEX WENO scheme for the all-Mach isentropic Euler system S Boscarino, JM Qiu, G Russo, T Xiong Journal of Computational Physics 392, 594-618, 2019 | 39 | 2019 |
On the asymptotic properties of IMEX Runge–Kutta schemes for hyperbolic balance laws S Boscarino, L Pareschi Journal of Computational and Applied Mathematics 316, 60-73, 2017 | 38 | 2017 |
On linearly implicit IMEX Runge-Kutta methods for degenerate convection-diffusion problems modeling polydisperse sedimentation S Boscarino, R Bürger, P Mulet, G Russo, LM Villada Bulletin of the Brazilian Mathematical Society, New Series 47, 171-185, 2016 | 26 | 2016 |
Implicit-explicit integral deferred correction methods for stiff problems S Boscarino, JM Qiu, G Russo SIAM Journal on Scientific Computing 40 (2), A787-A816, 2018 | 25 | 2018 |
High order semi-implicit WENO schemes for all-Mach full Euler system of gas dynamics S Boscarino, J Qiu, G Russo, T Xiong SIAM Journal on Scientific Computing 44 (2), B368-B394, 2022 | 23 | 2022 |
Conservative semi-Lagrangian schemes for kinetic equations Part I: Reconstruction SY Cho, S Boscarino, G Russo, SB Yun Journal of Computational Physics 432, 110159, 2021 | 23 | 2021 |
High order conservative Semi-Lagrangian scheme for the BGK model of the Boltzmann equation S Boscarino, SY Cho, G Russo, SB Yun arXiv preprint arXiv:1905.03660, 2019 | 23 | 2019 |
Conservative semi-Lagrangian schemes for kinetic equations Part II: Applications SY Cho, S Boscarino, G Russo, SB Yun Journal of Computational Physics 436, 110281, 2021 | 21 | 2021 |
High order semi-Lagrangian discontinuous Galerkin method coupled with Runge-Kutta exponential integrators for nonlinear Vlasov dynamics X Cai, S Boscarino, JM Qiu Journal of Computational Physics 427, 110036, 2021 | 19 | 2021 |
Approximate Taylor methods for ODEs A Baeza, S Boscarino, P Mulet, G Russo, D Zorío Computers & Fluids 159, 156-166, 2017 | 19 | 2017 |