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Quaternion SG Pte. Ltd.

Quantum Computing for Cellular Biology

Quaternion SG develops both quantum software and hardware to address fundamental problems in cellular biology through advanced proprietary algorithms. We maintain an in-house Research and Development department and an active Quantum Computing Laboratory, where we design, test, and implement quantum hardware and algorithms specifically tailored to problems in molecular dynamics, biological evolution, adaptation, and genetic information encoding.

Our theoretical research integrates analytical number theory and algebraic geometry as foundational tools for modeling biological systems, creating new quantum architectures that bridge physics, computation, and life sciences.

Quantum Computing for Cellular Biology

The Company

Quaternion SG Pte. Ltd., based in Singapore, is a research-driven enterprise focused on transforming advanced mathematical and physical theory into scientific software, quantum algorithms, and experimental platforms. Our mission is to bridge the gap between abstract theory and real-world biological computation through rigorous experimentation and cross-disciplinary collaboration.

Quantum Computing & Molecular Biology Lab

Research areas and core scientific directions:

Quantum Biological Computing

Quantum algorithms and simulations for biomolecular dynamics.

Arithmetic Biology

Encoding genetic and molecular structures through finite fields and algebraic geometry.

Homeoergodic Control

Dissipative Lagrangians and finite-state control agents ensuring system stability.

Spectral L-Function Algebra

Spectral and arithmetic methods for predicting molecular stability and interaction.

Research Lines

Arithmetic Quantization of Biological Systems

Representation of amino acids over finite fields and construction of complex Lagrangians; links to Galois representations and dynamical stability.

Spectral L-Function Algebra for Molecular Stability

Development of non-commutative algebras of Dirichlet and Eisenstein series for predicting chemical bonding and molecular coherence.

Quantum-Bio Neural Architectures

Quantum and algebraic neural networks inspired by membrane dynamics and biological information flow.

Research Program

Stage Objective
Theoretical Develop algebraic-quantum foundations: Lagrangians, L-functions, and arithmetic quantization frameworks.
Computational Quantum simulation of biomolecular systems; SDKs and data pipelines.
Applied Integration with experimental data (spectroscopy, genomics) and molecular design.

Contact

For research collaborations, partnerships, or technical inquiries, please reach out to us:

rhernandez@quaternionsg.com

Singapore · Global Operations