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Sunday, 30 Aug 2026

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· Quantum Physics · 30 · 08 · 2026

Photon trapping in a time cavity flying at the speed of light

Scientists have demonstrated the trapping of photons in a time cavity moving at the speed of light. This breakthrough, published in Nature, marks the first time light has been confined in a dynamic structure traveling at such an extreme velocity. The temporal cavity is created by ultrafast modulation of a medium's refractive index, allowing light to be trapped and propagate along with the cavity itself.

§ Today’s briefing

5 dispatches · 30 · 08 · 2026
· Applied Physics

Partial coherence control in magnetic skyrmions

A recent study has demonstrated that controlling partial coherence in electron beams can be an effective tool for manipulating and stabilizing magnetic skyrmions.… more →

NatureCol. 5

Temporal contagion networks: The hidden backbone of propagation

A new study has revealed that the propagation of contagion phenomena in complex networks, such as diseases or information, does not follow a random structure, but is organized into a temporal "backbone." This structure, which persists over time, determines the effectiveness and speed with which a contagion spreads, offering a new perspective on propagation dynamics in complex systems. The discovery challenges previous models that assumed homogeneity or randomness in interactions, highlighting the importance of the temporal sequence of contacts.

The researchers used a novel approach to analyze temporal networks, where connections between nodes (individuals, computers, etc.) are not static, but appear and disappear at specific moments. By applying this method to various datasets, from social interactions to the spread of computer viruses, they identified recurrent patterns in the sequence of contacts that act as preferential channels for transmission. These channels form the aforementioned backbone, which is denser and more persistent than the rest of the network.

The discovery challenges previous models that assumed homogeneity or randomness in interactions, highlighting the importance of the temporal sequence of contacts.
§ Technical sheet
Source
Nature
Category
Applied Physics
Edition
102
Date
2026-08-30
Reading
1 min
Origin
Source ↗

§ arXiv briefing

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    Proposed Search for Long-Lived Doubly Charged Scalars at the HL-LHC

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