Research Article10.1007/s00006-025-01422-6On Commutative Analogues of Clifford Algebras and Their DecompositionsDec 19, 2025Advances in Applied Clifford AlgebrasHeerak Sharma + 1 more +1CiteListenSave
Research Article110.1007/s00006-025-01430-6Beurling’s Theorem for the Cayley Heisenberg GroupDec 10, 2025Advances in Applied Clifford AlgebrasSaid Fahlaoui + 1 more +1CiteListenSave
Research Article10.1007/s00006-025-01418-2Lorentz Invariance of the Multidimensional Dirac–Hestenes EquationDec 05, 2025Advances in Applied Clifford AlgebrasSofia Rumyantseva + 1 more +1CiteListenSave
Research Article110.1007/s00006-025-01406-6Determinant, Characteristic Polynomial, and Inverse in Commutative Analogues of Clifford AlgebrasAug 25, 2025Advances in Applied Clifford AlgebrasHeerak Sharma + 1 more +1CiteListenSave
Research Article110.1007/s00006-025-01399-2E(n)-coactions on Semisimple Clifford AlgebrasJul 10, 2025Advances in Applied Clifford AlgebrasFabio RendaCiteListenSave
Research Article10.1007/s00006-025-01384-9Some $$\mathbb {H}$$-Banach Modules and Fiber BundlesMay 08, 2025Advances in Applied Clifford AlgebrasJosé Oscar González-CervantesCiteListenSave
Research Article10.1007/s00006-025-01375-wA Generalized Eigenvector–Eigenvalue Identity from the Viewpoint of Exterior AlgebraFeb 26, 2025Advances in Applied Clifford AlgebrasMałgorzata StawiskaCiteListenSave
Research Article710.1007/s00006-024-01347-6Scaled Global Operators and Fueter Variables on Non-zero Scaled Hypercomplex NumbersOct 15, 2024Advances in Applied Clifford AlgebrasDaniel Alpay + 2 more +2In this paper we describe the rise of global operators in the scaled quaternionic case, an important extension from the quaternionic case to the family of scaled hypercomplex numbers Ht,t∈R∗\\documentclass[12pt]{minimal} \\usepackage{amsmath} \\usepackage{wasysym} \\usepackage{amsfonts} \\usepackage{amssymb} \\usepackage{amsbsy} \\usepackage{mathrsfs} \\usepackage{upgreek} \\setlength{\\oddsidemargin}{-69pt} \\begin{document}$$\\mathbb {H}_t,\\, t\\in \\mathbb {R}^*$$\\end{document}, of which the H-1=H\\documentclass[12pt]{minimal} \\usepackage{amsmath} \\usepackage{wasysym} \\usepackage{amsfonts} \\usepackage{amssymb} \\usepackage{amsbsy} \\usepackage{mathrsfs} \\usepackage{upgreek} \\setlength{\\oddsidemargin}{-69pt} \\begin{document}$$\\mathbb {H}_{-1}=\\mathbb {H}$$\\end{document} is the space of quaternions and H1\\documentclass[12pt]{minimal} \\usepackage{amsmath} \\usepackage{wasysym} \\usepackage{amsfonts} \\usepackage{amssymb} \\usepackage{amsbsy} \\usepackage{mathrsfs} \\usepackage{upgreek} \\setlength{\\oddsidemargin}{-69pt} \\begin{document}$$\\mathbb {H}_{1}$$\\end{document} is the space of split quaternions. We also describe the scaled Fueter-type variables associated to these operators, developing a coherent theory in this field. We use these types of variables to build different types of function spaces on Ht\\documentclass[12pt]{minimal} \\usepackage{amsmath} \\usepackage{wasysym} \\usepackage{amsfonts} \\usepackage{amssymb} \\usepackage{amsbsy} \\usepackage{mathrsfs} \\usepackage{upgreek} \\setlength{\\oddsidemargin}{-69pt} \\begin{document}$$\\mathbb {H}_t$$\\end{document}. Counterparts of the Hardy space and of the Arveson space are also introduced and studied in the present setting. The two different adjoints in the scaled hypercomplex numbers lead to two parallel cases in each instance. Finally we introduce and study the notion of rational function.Read moreCiteListenSave
Research Article710.1007/s00006-024-01348-5A Classical System of Matrix Equations Over the Split Quaternion AlgebraSep 27, 2024Advances in Applied Clifford AlgebrasKai-Wen Si + 2 more +2CiteListenSave
Research Article10.1007/s00006-024-01353-8Parametrizing Clifford Algebras’ Matrix Generators with Euler AnglesSep 02, 2024Advances in Applied Clifford AlgebrasManuel Beato Vásquez + 1 more +1CiteListenSave