Strict algebraic models for rational parametrised spectra I
arXiv:1910.14608 · doi:10.2140/agt.2021.21.917
Abstract
Building on Quillen's rational homotopy theory, we obtain algebraic models for the rational homotopy theory of parametrised spectra. For any simply-connected space there is a dg Lie algebra and a (coassociative cocommutative) dg coalgebra that model the rational homotopy type. In this article, we prove that the rational homotopy type of an -parametrised spectrum is completely encoded by a -representation and also by a -comodule. The correspondence between rational parametrised spectra and algebraic data is obtained by means of symmetric monoidal equivalences of homotopy categories that vary pseudofunctorially in the simply-connected parameter space . Our results establish a comprehensive dictionary enabling the translation of topological constructions into homological algebra using Lie representations and comodules, and conversely. For example, the fibrewise smash product of parametrised spectra is encoded by the derived tensor product of dg Lie representations and also by the derived cotensor product of dg comodules. As an application, we obtain algebraic descriptions of rational homotopy classes of fibrewise stable maps, providing new tools for the study of spaces of sections.
76 pages. V2: background material added, typos fixed
References in corpus (5)
- Gauge enhancement of super M-branes via parametrized stable homotopy theory
- Multiplicative parametrized homotopy theory via symmetric spectra in retractive spaces
- Combinatorial parametrised spectra
- Strict algebraic models for rational parametrised spectra I
- Strict algebraic models for rational parametrised spectra II