Review of Quaternion Differential Equations: Historical Development, Applications, and Future Direction

Author:

Kartiwa Alit1ORCID,Supriatna Asep K.1ORCID,Rusyaman Endang1,Sulaiman Jumat2ORCID

Affiliation:

1. Department of Mathematics, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Sumedang 45363, Indonesia

2. Faculty of Science and Natural Resources, Universiti Malaysia Sabah, Kota Kinabalu 88400, Malaysia

Abstract

Quaternion is a four-dimensional and an extension of the complex number system. It is often viewed from various fields, such as analysis, algebra, and geometry. Several applications of quaternions are related to an object’s rotation and motion in three-dimensional space in the form of a differential equation. In this paper, we do a systematic literature review on the development of quaternion differential equations. We utilize PRISMA (preferred reporting items for systematic review and meta-analyses) framework in the review process as well as content analysis. The expected result is a state-of-the-art and the gap of concepts or problems that still need to develop or answer. It was concluded that there are still some opportunities to develop a quaternion differential equation using a quaternion function domain.

Funder

Universitas Padjadjaran through the scheme Riset Disertasi Doktor Unpad

Publisher

MDPI AG

Subject

Geometry and Topology,Logic,Mathematical Physics,Algebra and Number Theory,Analysis

Reference59 articles.

1. Familton, J.C. (2015). Quaternions: A History of Complex Noncommutative Rotation Groups in Theoretical Physics. [Ph.D. Thesis, Columbia University].

2. Tait, P.G. (1878). An Elementary Treatise Quaternions, Nabu Press. [2nd ed.].

3. Voight, J. (2020). Quaternion Algebras, Springer Nature.

4. On Fibonacci and Lucas Vectors and Quaternions;Kaya;Univers. J. Appl. Math.,2018

5. A Note on h(x)—Fibonacci Quaternion Polynomials;Catarino;Chaos Solitons Fractals,2015

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