Breaking 17:45 Anthony Fauci declines new U.S. Senate testimony, cites Fifth Amendment protections 15:47 Report says US missile stockpiles could constrain Trump’s options for further action against Iran 15:30 AI infrastructure spending drives hyperscalers to record bond issuance as borrowing costs climb 15:16 DoorDash launches in-house drone delivery program after FAA certification 15:15 US grant supports Morocco green ammonia project with $5.7 million in funding 14:15 Democratic senators urge SEC to investigate Trump Media’s premium Truth Social data feed 14:10 Visa plans to cut 2,600 jobs as part of restructuring and efficiency drive 13:29 Meta and BlackRock invest $14 billion in major AI data center project 13:15 Trump unveils $22 billion overhaul plan for Washington Dulles International Airport 13:13 Trump administration restricts foreign-made robots and power inverters over China security concerns 12:53 Apple surpasses $5 trillion market value in historic stock market milestone 11:45 India's Indian Oil explores gas carrier ownership to support higher U.S. LPG imports 11:35 Cognizant lowers revenue outlook as cautious IT spending weighs on growth 11:15 Trump describes meetings with Netanyahu and Zelensky as positive 10:30 U.S. says it intercepted Iranian ballistic missiles targeting American forces in the Middle East 10:25 New Trump administration rule could accelerate deportations of asylum seekers 10:10 Johnson & Johnson agrees to pay $5.5 billion to settle 76,000 talc-related cancer claims 08:48 iOS 26.6 update fixes more than 75 security vulnerabilities on iPhone 08:33 US immigration crackdown intensifies as airport arrests target visa overstays 08:18 Microsoft unveils ai-powered cybersecurity model to strengthen digital defense 07:30 Georgia school shooter sentenced to life without parole for 2024 attack

Iowa scientists refine photon purity to advance quantum technology

Thursday 25 December 2025 - 11:50
By: Dakir Madiha
Iowa scientists refine photon purity to advance quantum technology

Researchers at the University of Iowa have developed a new theoretical model that could resolve major challenges in quantum technology by purifying photons—the fundamental light particles that form the basis of quantum computing and communication systems. Their work, published in Optica Quantum, offers a potential route to generating single, interference-free photons with unprecedented precision.

Transforming noise into an advantage

In traditional quantum optical setups, unwanted photons and scattered laser light often disrupt experiments, reducing accuracy and efficiency. Graduate researcher Matthew Nelson uncovered that both sources of interference the stray photons and the scattered laser light share nearly identical properties. By tuning them to interact destructively, they can effectively cancel each other out, leaving behind an exceptionally clean photon flow.

Assistant Professor Ravitej Uppu, who led the study, explained that the discovery could turn one of quantum photonics’ most persistent problems into a strategic advantage. Researchers found that by adjusting how a laser interacts with an atom through angle, intensity, and configuration—they can suppress additional photon emissions and maintain a perfectly ordered single-photon stream.

Unlocking potential for quantum computing and security

Purified single-photon sources could help overcome one of the main technological barriers in developing scalable photonic quantum computers, which use light particles instead of electrical signals to carry information. Such precision is not only crucial for computation but also for quantum communication, where single-photon channels provide unmatched data security that is virtually immune to interception.

The study was supported by the Office of the Under Secretary of Defense for Research and Engineering, under the U.S. Department of Defense, and received additional funding from the University of Iowa’s internal research grant program. Although the findings are currently theoretical, the research team plans to carry out experimental trials to confirm the model’s effectiveness.


  • Fajr
  • Sunrise
  • Dhuhr
  • Asr
  • Maghrib
  • Isha

Read more

This website, walaw.press, uses cookies to provide you with a good browsing experience and to continuously improve our services. By continuing to browse this site, you agree to the use of these cookies.