Close Menu
    Trending
    • NHTSA considers new car door safety rules after fatal Tesla crashes
    • PlayStation Network outage resolved after thousands of gamers unable to play
    • Market Talk – July 24, 2026
    • Joe Biden Gives Up, Declines to Seek Further Review of Appeals Court Ruling on Release of Audiotapes with Ghostwriter
    • Meghan McCain Claps Back At Being Called ‘Old And Ugly’
    • Mixed day for global equities as oil prices retreat
    • Venezuela to exit International Criminal Court, accusing it of ‘bias’ | ICC News
    • Andy Reid shares massive Patrick Mahomes recovery update
    Benjamin Franklin Institute
    Friday, July 24
    • Home
    • Politics
    • Business
    • Science
    • Technology
    • Arts & Entertainment
    • International
    Benjamin Franklin Institute
    Home»Science»Quantum chemistry may not be the “killer app” for quantum computers after all
    Science

    Quantum chemistry may not be the “killer app” for quantum computers after all

    Team_Benjamin Franklin InstituteBy Team_Benjamin Franklin InstituteMarch 13, 2026No Comments3 Mins Read
    Share Facebook Twitter Pinterest Copy Link LinkedIn Tumblr Email VKontakte Telegram
    Share
    Facebook Twitter Pinterest Email Copy Link


    Calculating the chemical properties of molecules could be a job for quantum computers

    ETH Zurich

    Quantum chemistry calculations that could advance drug development or agriculture have recently emerged as a promising “killer application” of quantum computers, but a new analysis suggests this is unlikely to be the case.

    Progress in building quantum computers has greatly accelerated in recent years, but it remains an open question what uses are most likely to justify the ongoing investment in this technology. One popular contender is solving problems in quantum chemistry, such as calculating the energy levels of molecules relevant for biomedicine or industry. This requires accounting for the behavior of many quantum particles – electrons in the molecule – simultaneously, so it seems like a good match for computers made from many quantum parts.

    However, Xavier Waintal at CEA Grenoble in France and his colleagues have now shown that two leading quantum computing algorithms for this task may actually have, at best, limited use.

    “My personal thinking is that it’s probably doomed, not proven doomed, but probably doomed,” he says about using quantum computers for molecular energy calculations.

    The researchers split their mathematical analysis in two parts, one pertaining to existing quantum computers, which are all prone to errors, and one concerning future quantum computers that would be “fault-tolerant”, or fully error-proof.

    When using error-prone, or noisy, quantum computers, molecular energy levels can be calculated with the variational quantum eigensolver (VQE) algorithm, but the accuracy of its results depends on how severe that noisiness is.

    The team’s analysis found that for VQE to compete on accuracy with chemistry algorithms that can run on conventional computers, quantum computers’ noisiness must be suppressed so severely that they would effectively have to be fault-tolerant. Notably, a practical fault-tolerant quantum computer has not been made yet.

    Several quantum computing companies are aiming to build fault-tolerant quantum within five years and those devices could compute molecules’ energies with a different algorithm called quantum phase estimation (QPE). Here, the issue of errors is nearly eliminated, but the study underscores a problem that goes by the ominous name of “orthogonality catastrophe”.

    Put simply, this means that as the size of molecules increases, the likelihood that QPE can calculate its lowest energy level decreases exponentially. As a result, team member Thibaud Louvet at the French quantum computing company Quobly says that even with great quantum computers, there would only be a small number of cases where using them to run QPE would be the most practical and best choice. In his view, being able to run this algorithm should be seen more as a benchmark of quantum computers’ maturity than something that could become a mainstay for working chemists.

    “It is easy to over-hype the prospects of quantum computers in this domain, with many thinking that the advent of quantum computers will instantly render any classical approach to quantum chemistry obsolete,” says George Booth at King’s College London, who wasn’t involved in the work. “This study is clear to point out significant challenges for accurate molecular simulation, which will remain even in the ‘fault-tolerant era’, and cast doubt on whether quantum chemistry is really such a quick win for quantum computers.”

    But he says there are still other ways in which quantum computers could be used in chemistry. For example, they could simulate how chemical systems change after being perturbed, such as being hit with laser light.

    Topics:



    Source link

    Share. Facebook Twitter Pinterest LinkedIn Tumblr Email Telegram Copy Link

    Related Posts

    Science

    NHTSA considers new car door safety rules after fatal Tesla crashes

    July 24, 2026
    Science

    Fungus made fashion—researchers turn living organisms into textiles

    July 24, 2026
    Science

    How a 99-year-old mathematician unraveled a century-old braid mystery

    July 24, 2026
    Science

    Is it possible to regain a sense of smell? These scientists are working on it

    July 24, 2026
    Science

    Why don’t insects live in the ocean?

    July 24, 2026
    Science

    Why environmental groups are suing over SpaceX’s land swap deal

    July 24, 2026
    Editors Picks

    Goldman Sachs and Morgan Stanley see double-digit profit jumps

    January 16, 2026

    This official Google workaround gives you ad-free YouTube anytime

    June 21, 2026

    Younger generations aren’t just growing up online

    January 27, 2026

    Neanderthals treated a dental cavity by drilling into the tooth

    May 14, 2026

    Interstellar Comet 3I/ATLAS is almost as old as the universe itself

    June 23, 2026
    About Us
    About Us

    Welcome to Benjamin Franklin Institute, your premier destination for insightful, engaging, and diverse Political News and Opinions.

    The Benjamin Franklin Institute supports free speech, the U.S. Constitution and political candidates and organizations that promote and protect both of these important features of the American Experiment.

    We are passionate about delivering high-quality, accurate, and engaging content that resonates with our readers. Sign up for our text alerts and email newsletter to stay informed.

    Latest Posts

    NHTSA considers new car door safety rules after fatal Tesla crashes

    July 24, 2026

    PlayStation Network outage resolved after thousands of gamers unable to play

    July 24, 2026

    Market Talk – July 24, 2026

    July 24, 2026

    Subscribe for Updates

    Stay informed by signing up for our free news alerts.

    Paid for by the Benjamin Franklin Institute. Not authorized by any candidate or candidate’s committee.
    • Privacy Policy
    • About us
    • Contact us

    Type above and press Enter to search. Press Esc to cancel.