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Detalles Bibliográficos
Autores principales: Kemper, A. F., Alvertis, Antonios, Asaduzzaman, Muhammad, Bakalov, Bojko N., Baron, Dror, Bierman, Joel, Burgstahler, Blake, Chundury, Srikar, Das, Elin Ranjan, Furches, Jim, Guo, Fucheng, Jha, Raghav G., Klymko, Katherine, Kushwaha, Arvin, Li, Ang, Majumdar, Aishwarya, Marrero, Carlos Ortiz, Mohapatra, Shubdeep, Mori, Christopher, Mueller, Frank, Popovici, Doru Thom, Stavenger, Tim, Tirfe, Mastawal, Tubman, Norm M., Zheng, Muqing, Zhou, Huiyang, Liu, Yuan
Formato: Preprint
Publicado: 2025
Materias:
Acceso en línea:https://arxiv.org/abs/2511.13882
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  • Quantum computing has traditionally centered around the discrete variable paradigm. A new direction is the inclusion of continuous variable modes and the consideration of a hybrid continuous-discrete approach to quantum computing. In this paper, we discuss some of the advantages of this modality, and lay out a number of potential applications that can make use of it; these include applications from physics, chemistry, and computer science. We also briefly overview some of the algorithmic and software considerations for this new paradigm.