Thursday, August 06, 2026

 

‘Spooky’ particles transit DC suburbs, a step toward a quantum network




National Institute of Standards and Technology (NIST)





In early 2025, special signals wended their way through a fiber-optic highway strung above the streets and sidewalks of the Maryland suburbs. The arrival of those signals at their destination marks a significant step toward a long-held dream of building a “quantum network.” Researchers believe that this emerging technology could someday link quantum devices in ways that supercharge scientific research, enable ultrasecure communications and boost the power of future quantum computers.

National Institute of Standards and Technology (NIST) researchers and collaborators reported this advance in the Journal of Optical Communications and Networking.

A Special Kind of Network 

Quantum networks depend on a special phenomenon called entanglement. Often described as “spooky action at a distance” (a translation of a phrase coined by Albert Einstein), entangled objects share a unified quantum state, meaning they cannot be described independently even if they are far apart. When one object from an entangled pair is measured, this action determines the results of a measurement made on the other.

These long-distance links could reshape fields from astronomy to seismology to drug discovery. By sharing entangled photons, telescopes thousands of kilometers apart could someday collect and combine light from the same distant star or planet, yielding a much sharper image than any one telescope could on its own. Entangled sensors spread over an area could “listen” for tiny seismic disturbances and pinpoint a coming earthquake or volcanic eruption.

Networks of entangled quantum computers, meanwhile, might someday crunch algorithms too complex for any single device, helping scientists simulate potential new drugs and materials. Another possible application: ultrasecure communications networks where any attempt at hacking would be easily detected.

To unlock such benefits, however, scientists must first overcome multiple technical challenges. Among the biggest hurdles is finding a way to keep fragile entangled states alive outside the lab. 

Quantum networks gain their power by connecting distant users. But building entire fiber networks just for quantum applications would be prohibitively expensive. So a team of researchers from NIST, the Joint Quantum Institute (a partnership between NIST and the University of Maryland) and the New York-based company Qunnect set out to test whether quantum networks can run on the existing fiber-optic infrastructure that powers today’s internet.

‘About as Bad a Connection as You Can Possibly Have’

Most of the fibers the researchers used in their study dangle from poles. They expand as temperatures rise during the day and contract at night. Wind blows them around, and birds land on them. All these things can distort entangled photons as they propagate through the fibers.

“It’s about as bad a connection as you can possibly have,” said NIST physicist Oliver Slattery, one of the authors of the new study.

A noisy environment doesn’t trouble the so-called classical networks that carry your phone calls, video streams, emails and so on. In classical communication, information is typically encoded by modulating the power of the transmitted light, which is not sensitive to mechanical disturbances or temperature changes. 

By contrast, noisy fibers can be a showstopper for quantum networking. That’s because entangled states are usually encoded in what is known as photons’ polarization — the direction along which their electric field vibrates.

As they expand, contract and sway in the wind, fibers can twist and distort the polarizations of photons traveling through them — potentially disrupting the delicate entangled states as well.

 

A pair of particles start out each in a quantum superposition of two energy states: state 0 and state 1. Because the particles are also entangled with each other, when one is measured (represented by a ruler), both must randomly “collapse” such that one is fully in state 0 and the other is fully in state 1. The collapse is instantaneous for both particles, no matter how far apart they are.

Credit: N. Hanacek/NIST

Fixing the Quantum State in Real Time

In their study, NIST researchers used a commercial device to produce entangled pairs of photons. The photons in each pair shared a single quantum state in which the polarization of one photon was linked to that of the other. For example, the two polarizations could be parallel or at right angles to each other.

One photon from each pair was directed to an analyzer in the NIST lab, which measured the photon’s polarization. The other traveled through 62 kilometers (about 38.5 miles) of fiber to a second lab at the University of Maryland in College Park. 

The researchers knew that if they didn’t protect the flying photons’ quantum states, the fiber would twist and distort them, ruining the entanglement. So the scientists deployed a pair of devices to stabilize the photons’ polarizations in real time. These devices, developed by Qunnect, sent beams of “reference” light through the fiber and, at the other end, measured how their polarization states had been transformed. The exact inverse of these transformations were then applied to the experimental photons, keeping them entangled.

The scientists managed to transmit 1,500 entangled photons per second, a respectable rate though one that would need to improve for quantum networks to become practical. Over a 24-hour period, the researchers were able to distribute entangled photons 92.8% of the time, needing only 7.2% of the time for correcting polarizations. A statistical test confirmed that the photons detected at each end of the fiber had indeed remained entangled.

The experiment did not break a record for long-distance entanglement; a European group in 2022 distributed entangled photons over 248 kilometers of underground fiber. But the new study stands out for how much fiber was above ground and exposed to influences that real-world quantum networks will have to contend with. 

“I would call this a stress test of quantum networking systems,” says Yicheng Shi, a physicist at NIST and the study’s lead author. “We put this to an extreme test in an environment that’s really noisy. Amazingly, it turned out it still worked. It’s a demonstration that quantum networking protocols can work in real-world environments.”


Paper: Yicheng Shi, Jing Su, Anouar Rahmouni, Pranish Shrestha, Mheni Merzouki, Gabriel Bello Portmann, Anne Lazenby, Mael Flament, Mehdi Namazi, Abdella Battou, Oliver Slattery and Thomas Gerrits. Entanglement Distribution Over a Polarization-Stabilized Aerial Fiber. Journal of Optical Communications and Networking. Published online July 15, 2026. DOI: 10.1364/JOCN.592521

 

Could social media change your travel plans?



Positive engagement factors into millennials’ and Gen Z’s vacation destination choices




University of Georgia






New University of Georgia research suggests that social media could be influencing people’s travel plans.

When people post photos and videos of their trip, they may not be using those posts to just update family and friends on what they’re up to. They also love it when their posts get a bunch of likes and comments.

The researchers found that social media influenced travel plans across all age groups, but millennials were the most impacted. They were more likely to say that people who post about their travels are cool, and that this coolness factor motivates them to go to those same places and post about their own travels to boost their social status.

Perhaps unsurprisingly, baby boomers were less drawn in by similar posts and less likely to base their own trips off them.

Whenever we post something on social media, we expect our peers to respond positively and give likes and comments to create some engagement to our posts,” said Sabrina Rahman, the corresponding author of the study and a recent doctoral graduate from UGA’s Warnell School of Forestry and Natural Resources. “That expectation of getting positive feedback is what we call ‘social return,’ and we practice it in our everyday life without us knowing.”

Millennials, Gen Z look for unique destinations

The present publication includes three separate studies. Between all three studies, the research team made of Bynum Boley, Sabrina Rahman and Zachary Russell surveyed more than 2,000 participants across four age groups: baby boomers, Gen X, millennials and Gen Z.

The surveys asked whether people looked cool, popular and unique when they posted about their trips online. Possible destinations ranged from the more mainstream, such as France and spots in the United States, to less common destinations including Cuba and Slovenia. Participants were also asked if they would go to those same vacation destinations based on the posts they saw.

Which destinations people found appealing depended on their age.

Baby boomers were drawn to posts about mainstream destinations such as France. Younger generations, especially Gen Z, gravitated toward posts about less common locales.

“Gen Z won’t go with the flow. They’re always looking for novelty or adventure,” Rahman said. “Social media posts about some conventional destination won’t change their travel plans that much.”

Social media guides vacation planning in the digital age

Today, social media is entangled with how people plan and share their vacations. Not only can it give inspiration and tips for travel, but it can also motivate where people choose to go.

“It’s a relatively new phenomenon, but it’s very relevant given that about two-thirds of the world’s population are now social media users,” Rahman said. “People look into travel blogs, posts and reviews before traveling, so how appealing we find those destinations on social media shapes our travel intentions. And based on what kind of positive feedback I might get, that anticipation sometimes makes us visit some places or try a new restaurant.”  

This study was led by Bynum Boley, professor of parks, recreation and tourism management at UGA and the director of the UGA Tourism Research Lab. It has been published in Current Issues in Tourism and is co-authored by Zachary Russell.

 

New vaccine strategy protects against chikungunya and could become a platform for combating other diseases



In tests conducted on mice, a single dose of the formulation containing genetically modified viruses protected the rodents against the disease.




Fundação de Amparo à Pesquisa do Estado de São Paulo






An international team of researchers has developed an innovative strategy for producing new vaccines. They created a genetically modified version of the Chikungunya virus that replicates only once, yet still trains the immune system to defend itself without causing disease. In tests conducted on mice, a single dose of the formulation containing the modified immature virus was sufficient to generate antibodies and protect the rodents against lethal infection. 

The study was published in May in the journal NPJ Vaccines and was conducted by scientists from the University of São Paulo (USP) in Brazil and the University of Bonn in Germany. It paves the way for a new vaccine platform. In addition to protecting against chikungunya, the technology developed by the researchers can be adapted to combat other diseases. 

“The idea was to create a virus that enters the cell and activates the immune system but is physically incapable of becoming infectious. Thus, the vaccinated individual doesn’t experience symptoms nor are they at risk of developing the disease. That’s important because it allows for robust protection without the risk of side effects, expanding its use to include immunocompromised individuals and older adults,” explains Danillo Lucas Alves Esposito, a researcher at the Ribeirão Preto School of Pharmaceutical Sciences at the University of São Paulo (FCFRP-USP) and author of the study. Esposito is supported by FAPESP through a Young Investigator Grant.  

Traditionally, vaccines are produced to train the immune system using attenuated viruses, which are weakened through genetic mutations, or inactivated viruses, which are unable to replicate. “In this study, we sought to combine the efficacy of attenuated-virus vaccines with the safety of inactivated vaccines,” Esposito says. 

In addition to attenuated and inactivated virus vaccines, more recent platforms include protein subunit, recombinant, conjugate, viral vector, DNA, and RNA vaccines. Rather than using the entire virus, these vaccines use fragments, proteins, or genetic instructions to induce an immune response. 

The new platform proposed by the international team uses a unique strategy involving the inoculation of viruses that cannot mature within the host cell. As a result, the viruses do not become infectious but still provide protection against future infections. 

“That’s important because we currently have an attenuated virus vaccine against chikungunya that was reapproved by the FDA [the U.S. agency that regulates drugs] in 2025, albeit with restrictions, after a period of suspension. It isn’t recommended for very young children, older adults, immunocompromised individuals, or those with certain comorbidities because it may cause adverse effects,” he says.   

Non-virulent, but with an immune response

The researcher explains that almost all viruses undergo a maturation process that is essential for them to become infectious. In the case of arboviruses, such as Chikungunya, Zika, dengue, and yellow fever, this maturation occurs at the end of the replication cycle within the host cell.

“Specifically, in the case of Chikungunya, maturation depends on the removal of a surface protein [E3], which covers the protein [E2] responsible for allowing the virus to enter the cell. When E3 isn’t removed, E2 remains hidden, and the virus can’t infect the cell,” the researcher explains to Agência FAPESP.

In the natural life cycle of the Chikungunya virus, furin, a host enzyme, plays the role of removing the E3 protein and allowing E2 to act as the key to invading the next cell. To develop the vaccine using immature viruses, therefore, the scientists used human cells derived from colon cancer tissue (LoVo), which lack the furin enzyme.

Tips for editing the genome

Esposito explains that the virus must replicate at least once inside the cell to generate an immune response. For this reason, the researchers modified the viral genome by replacing the region recognized by furin with a sequence identified by an enzyme from a plant-infecting virus, the tobacco mosaic virus, which does not affect humans or mosquitoes.

“Thus, the virus is artificially ‘activated’ before vaccination. However, since this enzyme isn’t present in the human body, the virus can’t cause new infections,” says Esposito.

After this initial, controlled replication, all the resulting viruses are immature and incapable of infecting other cells. “They function solely as antigens, serving as a model for the immune system,” Esposito adds.

Another interesting finding from the study was that the immunized animals demonstrated the ability to neutralize the Mayaro virus in addition to being protected against Chikungunya, suggesting broader protective potential. “Since several arboviruses rely on furin to become infectious, the platform can be adapted for Zika, yellow fever, and even variants of SARS-CoV-2, for example” he says.

“It’s an interesting platform. Now, in addition to moving forward with clinical trials, we’re interested in using this vaccine platform for other arboviruses,” he states. 

About São Paulo Research Foundation (FAPESP)
The São Paulo Research Foundation (FAPESP) is a public institution with the mission of supporting scientific research in all fields of knowledge by awarding scholarships, fellowships and grants to investigators linked with higher education and research institutions in the State of São Paulo, Brazil. FAPESP is aware that the very best research can only be done by working with the best researchers internationally. Therefore, it has established partnerships with funding agencies, higher education, private companies, and research organizations in other countries known for the quality of their research and has been encouraging scientists funded by its grants to further develop their international collaboration. You can learn more about FAPESP at www.fapesp.br/en and visit FAPESP news agency at www.agencia.fapesp.br/en to keep updated with the latest scientific breakthroughs FAPESP helps achieve through its many programs, awards and research centers. You may also subscribe to FAPESP news agency at http://agencia.fapesp.br/subscribe

 

 

Researchers find telemedicine increasingly used for chronic endocrine, behavioral health issues



Study also showed that telemedicine might allow pediatric primary care offices to expand appointment schedules




Children's Hospital of Philadelphia






Philadelphia, August 5, 2026 – A multi-institutional study led by researchers at Children’s Hospital of Philadelphia (CHOP) found that telemedicine is becoming increasingly common for problem-based primary care, particularly for children with endocrine or behavioral health issues where chronic needs are significant. The availability of telemedicine may also help increase appointment volume so that more patients can be seen. The findings were published today in the journal Pediatrics.

In 2020, telemedicine allowed patients to keep up with their appointments during the pandemic. By mid-2020, 97% of primary care pediatricians reported using telemedicine, up from 15% in 2016. Telemedicine has the potential to bridge geographic barriers to care, improve access to specialists and assist patients with chronic conditions more nimbly. However, barriers to its widespread use persist, ranging from a lack of telemedicine devices and poor internet access for some families, challenging clinical workflows, and provider preferences in the office. Additionally, despite its increased use, there is limited evidence on how telemedicine is being used to deliver primary care to children, particular across specific health conditions.

“The increase in telemedicine adoption in 2020 was out of necessity due to the pandemic, but now there’s an opportunity to see where its use is having the greatest impact,” said lead study author Alexander Fiks, MD, a pediatrician and the Director of Clinical Futures and the Possibilities Project: Innovation in Pediatric Primary Care at CHOP as well as Director of the American Academy of Pediatrics Pediatric Research in Office Settings (PROS) network that was also involved in the study.

The researchers conducted a retrospective study using electronic health records  (EHRs) from 1,088 practices with a patient population comprised of children under 18 years old receiving care at participating sites. The study included 19,633,472 problem-based visits – appointments aimed at addressing specific health complaints, chronic conditions or other issues – conducted between 2019 and 2024.

In the study, the researchers identified 6 clinical domains with the highest proportion of problem-based visits conducted via telemedicine throughout the study period. These included behavioral health (20%), endocrine (19%), dermatology (11%), infectious disease (11%), digestive health (10%), and respiratory health (9%). Enhancing access to ongoing care via telemedicine can supplement in-person care for situations that only periodically require a detailed physical examination, while also addressing family time constraints that often hinder access to care.

During the study period, the researchers noted several changes in the adoption of telemedicine. In 2019, telemedicine represented less than 1% of visits, peaked at 55% of visits in April 2020, and declined to 6% by 2024. From 2019 to May 2023, each additional telemedicine visit was associated with a non-significant net change in total visit volume, and after May 2023, each additional telemedicine visit was associated with an increase in total visit volume, suggesting that in recent years, more patients may be seen for problem-based visits as more practices routinely adopt telemedicine into their offerings.

“This study has helped us clarify the role of telemedicine and its impact on problem-based care,” Fiks said. “We still need studies to investigate how these increased telemedicine visits impact child health outcomes while also reducing the burdens and access barriers families may face when seeking quality care for their children.”

The study was supported by National Institutes of Health grant R01HD107153. Additional infrastructure funding was provided by the American Academy of Pediatrics and Health Resources and Services Administration of the US Department of Health and Human Services under grant U5DMC39344. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.

Fiks et al, “Telemedicine use in primary care for children: 2019-2024.” Pediatrics. Online August 5, 2026. DOI: 10.1542/peds.2025.075498.

 

First comprehensive repository of lifestyle medicine scientific evidence launches



ACLM has created a comprehensive, curated repository of lifestyle medicine research, debuting with more than 1,500 studies designed to more easily translate whole-person care evidence into practice



American College of Lifestyle Medicine






ST. LOUIS–The American College of Lifestyle Medicine (ACLM) has launched the Lifestyle Medicine Evidence Repository, the first centralized, curated collection of scientific research focused specifically on lifestyle medicine interventions.

Designed to support clinicians, researchers, educators, journalists and policymakers, the new repository brings together systematically screened and categorized studies into a single, searchable platform—making it easier than ever to explore the evidence behind lifestyle medicine’s approach to treating, reversing and preventing chronic disease.

“At its core, this repository is about access and usability,” said ACLM Senior Director of Research and Quality Micaela Karlsen, PhD, MSPH. “There is a large and growing body of research relevant to lifestyle medicine interventions, but it hasn’t existed in one organized, easy-to-navigate resource. This tool helps bridge that gap.”

A curated evidence base

The repository launches with more than 1,500 studies, all of which meet defined inclusion criteria, representing a variety of systematic reviews, meta-analyses, and intervention studies.  

Key features include:

  • Advanced search filters, allowing users to sort by publication year, lifestyle medicine pillars, study design, and outcome categories
  • Direct links to source publications, including abstracts and full-text articles when available
  • Downloadable search results, making it easier to compile references for research, presentations, or clinical applications

Built for real-world use

To be included, studies must incorporate at least two of the six lifestyle medicine pillars—optimal nutrition, physical activity, restorative sleep, stress management, connectedness and avoidance of risky substances—rather than focusing on a single intervention alone. Studies also must either actually occur in a clinical setting, or must produce results relevant to what can be implemented clinically.

“Lifestyle medicine is fundamentally about how behaviors work together to influence health,” Dr. Karlsen said. “By focusing on studies that include multiple pillars, the repository better reflects what lifestyle medicine is really about – a whole-person, multimodal approach to healthcare.”

Initial content includes systematic reviews and meta-analyses published in the last five years, as well as a selection of intervention studies. Additional repository entries will be added on a rolling basis in the coming months.

Access the Lifestyle Medicine Evidence Repository here:

About ACLM®

The American College of Lifestyle Medicine (ACLM) is the nation’s medical professional society building the infrastructure to scale lifestyle medicine as the new standard of care. ACLM translates evidence-based lifestyle interventions into education, certification, and implementation, equipping physicians, healthcare professionals, and systems of care to treat the root causes of chronic disease. Since 2004, ACLM has trained more than 100,000 health professionals and made more than 1.75 million hours of accredited continuing education available through courses and conferences for physicians and health professionals. With hundreds of institutional partners worldwide, ACLM is helping healthcare move from a system designed to manage disease to one capable of restoring health.

 

Osiris 41 brings together the histories of science and childhood studies





University of Chicago Press Journals









“What does science owe children, and how can the history of science contribute to repaying that debt?” This question motivates the 2026 volume of Osiris, entitled “Histories of Science and Childhoods.” Edited by Andrea Graus, Violeta Ruiz, and Elisabeth M. Yang, the volume features a collection of articles that examine the interrelation of two categories: childhood and science.

In the editors’ introduction, Graus, Ruiz, and Yang lay out their vision for the volume and foreground childhood studies as a useful theoretical framework with which to approach the history of science, medicine, and technology. They argue that history of science scholarship related to childhood has mainly privileged the West and Global North, and it has tended to take a “top-down” approach—that is, minimizing or erasing the voices of actual children. The editors point out that even the concept of “childhood” is not universal, as it relies on an ableist, colonial, and heteronormative conception of chronological time and age. Articles in the volume challenge these norms and assumptions by bringing together a creative array of source material and disciplinary perspectives.

Since the European Enlightenment, scientific knowledge about children has informed developments in technology, medicine, education, and social policy—developments that have profoundly impacted children’s lives and experiences. But rather than viewing science as unilaterally acting upon children and notions of childhood, the editors and contributors of Osiris 41 offer up a more dynamic way of understanding this relationship. Articles in the volume argue that “child and childhood create and act in and upon science and those who practice it.”  By treating children as “fully fledged historical actors,” the editors suggest, we can gain a new, more diverse perspective on the history of science that recognizes children’s influence and contributions.

The volume is comprised of three main sections. Firstly, a cluster of articles focuses on the notion of children’s agency, using varied sources to historicize and problematize this concept. Another section examines the technologies and politics of child health. A third section highlights the entangled relationship between childhood and science, exploring how ideas about childhood have shaped scientific thinking. To conclude the volume, a final essay unpacks the assertion that “every child is a scientist.”

Taken together, the contributions in Osiris 41 paint a picture of childhood as a “relational category”—a subjective concept defined in terms of what it is not. They ask readers to consider how and why we study science and how we choose objects of study. They suggest new ways to think about agency and its relationship to historical change. As the editors write: “Our hope is that this volume signifies the emergence of a new paradigm, one that conjoins the histories of science and childhood studies and promotes truly interdisciplinary—and in turn, transdisciplinary—work that bears not just the virtues of intellect but also that of moral beneficence, especially toward the marginalized and vulnerable.”


Founded in 1936 by George Sarton, and relaunched by the History of Science Society in 1985, Osiris is an annual thematic journal that highlights research on significant themes in the history of science.

Founded in 1924, the History of Science Society is the world’s largest society dedicated to understanding science, technology, medicine, and their interactions with society in historical context.