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GOVZMANN Alisa

Main Referenced Co-authors
PISTALO, Damjan  (6)
PONCIN, Norbert  (6)
Main Referenced Keywords
model category, homotopy theory, derived functor, D-module, D-geometry, homotopical geometry, Tor functor, spectral sequence. (1);
Main Referenced Disciplines
Mathematics (7)

Publications (total 7)

The most downloaded
226 downloads
GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). A new approach to model categorical homotopy fiber sequences. Dissertationes Mathematicae, doi: 10.4064/dm858-5-2022, 57. doi:10.4064/dm858-5-2022 https://hdl.handle.net/10993/47841

The most cited

2 citations (Scopus®)

GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). A new approach to model categorical homotopy fiber sequences. Dissertationes Mathematicae, doi: 10.4064/dm858-5-2022, 57. doi:10.4064/dm858-5-2022 https://hdl.handle.net/10993/47841

GOVZMANN, A., PISTALO, D., & PONCIN, N. (November 2024). The Tor Spectral Sequence and Flat Morphisms in Homotopical D-Geometry. Higher Structures, 8 (2), 210-247. doi:10.21136/HS.2024.11
Peer reviewed

GOVZMANN, A. (2023). Derived algebraic geometry over differential operators [Doctoral thesis, Unilu - University of Luxembourg]. ORBilu-University of Luxembourg. https://orbilu.uni.lu/handle/10993/53604

GOVZMANN, A., PISTALO, D., & PONCIN, N. (15 December 2022). Comparison theorems for Kan, faintly universal and strongly universal derived functors. Surveys in Mathematics and its Applications, 17, 397-429.
Peer Reviewed verified by ORBi

GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). Conference 'Interactions and Applications of Homotopical Algebra and Geometry'. https://orbilu.uni.lu/handle/10993/53254

GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). Indeterminacies and models of homotopy limits. Theory and Applications of Categories, 38 (41), 1608-1635.
Peer reviewed

GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). Étale Coverings in Homotopical D-Geometry. (1). ORBilu-University of Luxembourg. https://orbilu.uni.lu/handle/10993/53028.

GOVZMANN, A., PISTALO, D., & PONCIN, N. (2022). A new approach to model categorical homotopy fiber sequences. Dissertationes Mathematicae, doi: 10.4064/dm858-5-2022, 57. doi:10.4064/dm858-5-2022
Peer reviewed

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