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Algebraic Theories and (Infinity,1)-Categories
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Algebraic Theories and (Infinity,1)-Categories
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We adapt the classical framework of algebraic theories to work in the setting of (infinity,1)-categories developed by Joyal and Lurie. This gives a suitable approach for describing highly structured objects from homotopy theory. A central example, treated at length, is the theory of E_infinity spaces: this has a tidy combinatorial description in terms of span diagrams of finite sets. We introduce a theory of distributive laws, allowing us to describe objects with two distributing E_infinity stuctures. From this we produce a theory of E_infinity ring spaces. We also study grouplike objects, and produce theories modelling infinite loop spaces (or connective spectra), and infinite loop spaces with coherent multiplicative structure (or connective ring spectra). We use this to construct the units of a grouplike E_infinity ring space in a natural manner. Lastly we provide a speculative pleasant description of the K-theory of monoidal quasicategories and quasicategories with ring-like structures.
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Cited by 1 Pith paper
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2-dimensional Lawvere theories, commutativity, and higher Day convolution
A Lawvere 2-theory with a lax (or pseudo/strict) commutativity structure has a model category that is a closed 2-multicategory, implying a Fox-style comonad and a generalized Day convolution.
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