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Home Science News Mathematics

Quantum computers could give scientists a new way to explore the hidden behaviour of matter

August 31, 2026
in Mathematics
Katie Riggs
By Katie Riggs Scienmag Editorial Profile - Quantum Physics
Reading Time: 3 mins read
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Quantum computers could give scientists a new way to explore the hidden behaviour of matter

Quantum computers could give scientists a new way to explore the hidden behaviour of matter

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Original Article Title: Quantum computers could give scientists a new way to explore the hidden behaviour of matter

Journal or Source Feed: Eurekalert | Mmathematics

Original Publication Date: 2026-08-26

Canonical Source URL:

Canonical DOI: Not provided

Context Rule: These fields identify the source article. DOIs inside the bibliography identify cited works and must not replace the canonical DOI above.

News Release
25-Aug-2026

Quantum computers could give scientists a new way to explore the hidden behaviour of matter

Queen Mary University of London researchers develop a quantum computational spectroscopy approach that could open new ways of studying complex quantum systems

Peer-Reviewed Publication
Queen Mary University of London








Queen Mary University Campus
image: Queen Mary University Campus

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Credit: Queen Mary University of London

Scientists could have a new way to explore the hidden behaviour of matter, thanks to research involving Queen Mary University of London that uses a quantum computer to carry out a new form of computational spectroscopy. 

Spectroscopy is an important scientific technique used to understand the properties of matter. By analysing how materials and molecules respond to energy or light, researchers can gain insights into their structure and behaviour. Computational approaches can complement these experiments by allowing scientists to investigate and predict properties using theoretical models and simulations. 

However, quantum systems can be exceptionally difficult to model using conventional computers. The new research, published in Nature Communications, develops a generalised approach to quantum computational spectroscopy that allows researchers to study a much broader range of quantum systems. 

The method can be used not only for relatively simple, static systems, but also for systems that are affected by their environment or change over time. The researchers reconstructed a key measure of quantum behaviour using a quantum computing technique known as an ancilla-assisted Hadamard test. The researchers used the method to investigate unusual quantum phenomena, including parity-time symmetry breaking and topological holonomy. These examples demonstrate how quantum computational spectroscopy could provide insights into quantum behaviour that are difficult to access using conventional spectroscopy or existing quantum approaches. 

The work could ultimately be relevant to areas including physics, chemistry and materials science. Computational spectroscopy can help researchers investigate the properties of real or hypothetical materials before they are produced experimentally, with potential applications in areas such as molecular engineering, drug design and advanced materials research. 

Dr Jinzhao Sun, from the School of Physical and Chemical Sciences at Queen Mary University of London, led the theoretical aspect of the study. The research represents a step towards using quantum computers not simply to perform calculations, but as tools for exploring and understanding the behaviour of complex quantum systems. 

As quantum computing technology develops, approaches such as this could provide scientists with new ways to investigate phenomena that are difficult to reproduce or calculate using conventional methods. 



Journal

Nature Communications

DOI

10.1038/s41467-026-74936-7

Article Title

Generalised quantum computational spectroscopy on a quantum chip

Article Publication Date

11-Jul-2026

Disclaimer: AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert system.







Subject of Research: Mathematics

Subject of Research: Mathematics

Article Title: Quantum computers could give scientists a new way to explore the hidden behaviour of matter

Article References: Original research article

Image Credits: AI Generated

DOI: Not provided

Keywords: advancements in quantum technology for scientific research, exploring hidden behavior of matter with quantum computers, future of computational physics with quantum computing, impact of quantum computing on scientific discovery, innovative approaches to studying matter at the quantum level, new methods for studying matter using quantum algorithms, potential of quantum computers in physics experiments, quantum computational models for physical phenomena, quantum computing applications in material science, quantum mechanics and matter interaction, quantum simulation of complex physical systems, scientific exploration with emerging quantum hardware

Cite Scienmag News

Katie Riggs. (August 31, 2026). Quantum computers could give scientists a new way to explore the hidden behaviour of matter. Scienmag. https://scienmag.com/quantum-computers-could-give-scientists-a-new-way-to-explore-the-hidden-behaviour-of-matter/

Katie Riggs. "Quantum computers could give scientists a new way to explore the hidden behaviour of matter." Scienmag, 31 August 2026, https://scienmag.com/quantum-computers-could-give-scientists-a-new-way-to-explore-the-hidden-behaviour-of-matter/. Accessed 31 August 2026.

Katie Riggs. "Quantum computers could give scientists a new way to explore the hidden behaviour of matter." Scienmag. August 31, 2026. https://scienmag.com/quantum-computers-could-give-scientists-a-new-way-to-explore-the-hidden-behaviour-of-matter/

Tags: advancements in quantum algorithms for physical simulationsadvancements in quantum technology for scientific researchdevelopment of quantum algorithms for material analysisexploring hidden behavior of matter with quantum computersexploring hidden matter behaviors with quantum technologyfuture of computational physics with quantum computingfuture of quantum simulation in condensed matter physicsimpact of quantum computing on scientific discoveryimpact of quantum technology on fundamental physics researchinnovations in quantum hardware for scientific researchinnovative approaches to studying matter at the quantum levelnew methods for studying matter using quantum algorithmspotential of quantum computers for scientific discoverypotential of quantum computers in physics experimentsquantum computational models for physical phenomenaquantum computing applications in material sciencequantum mechanics and computational modelingquantum mechanics and matter interactionquantum physics and matter interactionsquantum simulation of complex physical systemsscientific exploration enabled by quantum computational powerscientific exploration with emerging quantum hardwareusing quantum computers to understand complex molecular structures
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