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Gregory Beylkin
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- affiliation: University of Colorado, USA
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2020 – today
- 2021
- [i3]Gregory Beylkin, Sandeep Sharma:
A fast algorithm for computing the Boys function. CoRR abs/2107.01488 (2021)
2010 – 2019
- 2019
- [j19]Gregory Beylkin, Lucas Monzón, Xinshuo Yang:
Reduction of multivariate mixtures and its applications. J. Comput. Phys. 383: 94-124 (2019) - [j18]Matthew S. Mitchell, Matthew T. Miecnikowski, Gregory Beylkin, Scott E. Parker:
Efficient Fourier basis particle simulation. J. Comput. Phys. 396: 837-847 (2019) - [j17]Joel Anderson, Robert J. Harrison, Hideo Sekino, Bryan E. Sundahl, Gregory Beylkin, George I. Fann, Stig R. Jensen, Irina Sagert:
On derivatives of smooth functions represented in multiwavelet bases. J. Comput. Phys. X 4: 100033 (2019) - 2017
- [j16]Matthew J. Reynolds, Gregory Beylkin, Alireza Doostan:
Optimization via separated representations and the canonical tensor decomposition. J. Comput. Phys. 348: 220-230 (2017) - 2016
- [j15]Robert J. Harrison, Gregory Beylkin, Florian A. Bischoff, Justus A. Calvin, George I. Fann, Jacob Fosso-Tande, Diego Galindo, Jeff R. Hammond, Rebecca Hartman-Baker, Judith C. Hill, Jun Jia, Jakob S. Kottmann, Miao-Jung Yvonne Ou, Junchen Pei, Laura E. Ratcliff, Matthew G. Reuter, Adam C. Richie-Halford, Nichols A. Romero, Hideo Sekino, William A. Shelton, Bryan E. Sundahl, W. Scott Thornton, Edward F. Valeev, Álvaro Vázquez-Mayagoitia, Nicholas Vence, Takeshi Yanai, Yukina Yokoi:
MADNESS: A Multiresolution, Adaptive Numerical Environment for Scientific Simulation. SIAM J. Sci. Comput. 38(5) (2016) - [j14]Matthew J. Reynolds, Alireza Doostan, Gregory Beylkin:
Randomized Alternating Least Squares for Canonical Tensor Decompositions: Application to A PDE With Random Data. SIAM J. Sci. Comput. 38(5) (2016) - 2015
- [j13]David J. Biagioni, Daniel J. Beylkin, Gregory Beylkin:
Randomized interpolative decomposition of separated representations. J. Comput. Phys. 281: 116-134 (2015) - [i2]Robert J. Harrison, Gregory Beylkin, Florian A. Bischoff, Justus A. Calvin, George I. Fann, Jacob Fosso-Tande, Diego Galindo, Jeff R. Hammond, Rebecca Hartman-Baker, Judith C. Hill, Jun Jia, Jakob S. Kottmann, Miao-Jung Yvonne Ou, Laura E. Ratcliff, Matthew G. Reuter, Adam C. Richie-Halford, Nichols A. Romero, Hideo Sekino, William A. Shelton, Bryan E. Sundahl, W. Scott Thornton, Edward F. Valeev, Álvaro Vázquez-Mayagoitia, Nicholas Vence, Yukina Yokoi:
MADNESS: A Multiresolution, Adaptive Numerical Environment for Scientific Simulation. CoRR abs/1507.01888 (2015) - 2014
- [j12]Gregory Beylkin, K. Sandberg:
ODE solvers using band-limited approximations. J. Comput. Phys. 265: 156-171 (2014) - 2013
- [i1]David J. Biagioni, Daniel J. Beylkin, Gregory Beylkin:
On Rank Reduction of Separated Representations. CoRR abs/1306.5013 (2013) - 2012
- [j11]Terry S. Haut, Gregory Beylkin:
Fast and Accurate Con-Eigenvalue Algorithm for Optimal Rational Approximations. SIAM J. Matrix Anal. Appl. 33(4): 1101-1125 (2012) - [j10]Gregory Beylkin, Ryan D. Lewis, Lucas Monzón:
On the Design of Highly Accurate and Efficient IIR and FIR Filters. IEEE Trans. Signal Process. 60(8): 4045-4054 (2012)
2000 – 2009
- 2009
- [j9]Gregory Beylkin, Christopher Kurcz, Lucas Monzón:
Fast convolution with the free space Helmholtz Green's function. J. Comput. Phys. 228(8): 2770-2791 (2009) - [j8]Gregory Beylkin, Jochen Garcke, Martin J. Mohlenkamp:
Multivariate Regression and Machine Learning with Sums of Separable Functions. SIAM J. Sci. Comput. 31(3): 1840-1857 (2009) - 2005
- [j7]Gregory Beylkin, Martin J. Mohlenkamp:
Algorithms for Numerical Analysis in High Dimensions. SIAM J. Sci. Comput. 26(6): 2133-2159 (2005) - 2004
- [j6]George I. Fann, Gregory Beylkin, Robert J. Harrison, Kirk E. Jordan:
Singular operators in multiwavelet bases. IBM J. Res. Dev. 48(2): 161-172 (2004) - 2003
- [c2]Robert J. Harrison, George I. Fann, Takeshi Yanai, Gregory Beylkin:
Multiresolution Quantum Chemistry in Multiwavelet Bases. International Conference on Computational Science 2003: 103-110 - 2002
- [j5]Gregory Beylkin, Robert Cramer:
A Multiresolution Approach to Regularization of Singular Operators and Fast Summation. SIAM J. Sci. Comput. 24(1): 81-117 (2002)
1990 – 1999
- 1997
- [j4]Naoki Saito, Gregory Beylkin:
Correction to "Multiresolution Representations Using the Autocorrelation Functions of Compactly Supported Wavelets" [Correspondencd]. IEEE Trans. Signal Process. 45(3): 768 (1997) - 1993
- [j3]Bradley K. Alpert, Gregory Beylkin, Ronald R. Coifman, Vladimir Rokhlin:
Wavelet-Like Bases for the Fast Solution of Second-Kind Integral Equations. SIAM J. Sci. Comput. 14(1): 159-184 (1993) - [j2]Naoki Saito, Gregory Beylkin:
Multiresolution representations using the autocorrelation functions of compactly supported wavelets. IEEE Trans. Signal Process. 41(12): 3584-3590 (1993) - 1992
- [c1]Naoki Saito, Gregory Beylkin:
Multiresolution representations using the auto-correlation functions of compactly supported wavelets. ICASSP 1992: 381-384
1980 – 1989
- 1987
- [j1]Gregory Beylkin:
Discrete radon transform. IEEE Trans. Acoust. Speech Signal Process. 35(2): 162-172 (1987)
Coauthor Index
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