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Joachim Stöckler
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2020 – today
- 2021
- [j15]Wolfgang Dornisch, Joachim Stöckler:
An isogeometric mortar method for the coupling of multiple NURBS domains with optimal convergence rates. Numerische Mathematik 149(4): 871-931 (2021) - 2020
- [j14]Maria Charina, Costanza Conti, Lucia Romani, Joachim Stöckler, Alberto Viscardi:
Optimal Hölder-Zygmund exponent of semi-regular refinable functions. J. Approx. Theory 251: 105340 (2020)
2010 – 2019
- 2016
- [j13]Tobias Kloos, Joachim Stöckler, Karlheinz Gröchenig:
Implementation of Discretized Gabor Frames and Their Duals. IEEE Trans. Inf. Theory 62(5): 2759-2771 (2016) - [i4]Karlheinz Gröchenig, José Luis Romero, Joachim Stöckler:
Sampling Theorems for Shift-invariant Spaces, Gabor Frames, and Totally Positive Functions. CoRR abs/1612.00651 (2016) - 2015
- [i3]Tobias Kloos, Joachim Stöckler, Karlheinz Gröchenig:
Implementation of discretized Gabor frames and their duals. CoRR abs/1506.06918 (2015) - 2014
- [j12]Tobias Kloos, Joachim Stöckler:
Zak transforms and Gabor frames of totally positive functions and exponential B-splines. J. Approx. Theory 184: 209-237 (2014) - [j11]Tobias Kloos, Joachim Stöckler:
Erratum to "Zak transforms and Gabor frames of totally positive functions and exponential B-splines" [J. Approx. Theory 184 (2014) 209-237]. J. Approx. Theory 187: 118 (2014) - [j10]Severin Bannert, Karlheinz Gröchenig, Joachim Stöckler:
Discretized Gabor Frames of Totally Positive Functions. IEEE Trans. Inf. Theory 60(1): 159-169 (2014) - 2013
- [i2]Severin Bannert, Karlheinz Gröchenig, Joachim Stöckler:
Discretized Gabor Frames of Totally Positive Functions. CoRR abs/1308.2808 (2013) - [i1]Tobias Kloos, Joachim Stöckler:
Zak transforms and Gabor frames of totally positive functions and exponential B-splines. CoRR abs/1311.7359 (2013) - 2011
- [j9]Tobias Springer, Katja Ickstadt, Joachim Stöckler:
Frame potential minimization for clustering short time series. Adv. Data Anal. Classif. 5(4): 341-355 (2011) - 2010
- [j8]Maria Charina, Joachim Stöckler:
Tight wavelet frames via semi-definite programming. J. Approx. Theory 162(8): 1429-1449 (2010)
2000 – 2009
- 2004
- [j7]Elena E. Berdysheva, Kurt Jetter, Joachim Stöckler:
New polynomial preserving operators on simplices: direct results. J. Approx. Theory 131(1): 59-73 (2004) - 2003
- [j6]Charles K. Chui, Wenjie He, Joachim Stöckler, Qiyu Sun:
Compactly Supported Tight Affine Frames with Integer Dilations and Maximum Vanishing Moments. Adv. Comput. Math. 18(2-4): 159-187 (2003) - [j5]Kurt Jetter, Joachim Stöckler:
An identity for multivariate Bernstein polynomials. Comput. Aided Geom. Des. 20(8-9): 563-577 (2003)
1990 – 1999
- 1999
- [j4]Kurt Jetter, Joachim Stöckler, Joseph D. Ward:
Error estimates for scattered data interpolation on spheres. Math. Comput. 68(226): 733-747 (1999) - 1998
- [j3]Charles K. Chui, Xianliang Shi, Joachim Stöckler:
Affine frames, quasi-affine frames, and their duals. Adv. Comput. Math. 8(1-2): 1-17 (1998) - 1997
- [c1]Joachim Stöckler:
Preconditioning of the Frame Algorithm. LSSC 1997: 338-346 - 1996
- [j2]Charles K. Chui, Joachim Stöckler, Joseph D. Ward:
Analytic wavelets generated by radial functions. Adv. Comput. Math. 5(1): 95-123 (1996) - 1995
- [j1]Kurt Jetter, Joachim Stöckler:
A generalization of de Boor's stability result and symmetric preconditioning. Adv. Comput. Math. 3(4): 353-367 (1995) - 1991
- [p1]Charles K. Chui, Joachim Stöckler, Joseph D. Ward:
Polynomial Expansions for Cardinal Interpolants and Orthonormal Wavelets. Curves and Surfaces 1991: 83-90
Coauthor Index
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