Template:Mainpage rotating external quantum article: Difference between revisions

From HandWiki Test
Update rotating external quantum article
Tag: Manual revert
Update rotating external quantum article
Tag: Manual revert
 
(66 intermediate revisions by the same user not shown)
Line 16: Line 16:


<div style="font-size:120%; font-weight:bold; margin-bottom:4px;">
<div style="font-size:120%; font-weight:bold; margin-bottom:4px;">
Researchers establish new basis for quantum sensing and communication
In Quantum Sensing, What Beats Beating Noise? Meeting Noise Halfway.
</div>
</div>


<div style="font-size:90%; color:#555; margin-bottom:8px;">
<div style="font-size:90%; color:#555; margin-bottom:8px;">
MIT News | Massachusetts Institute of Technology · Moe Win, MIT AeroAstro, MIT LIDS, MIT IDSS, Quantum neXus Laboratory, quantum sensing, photon-varied Gaussian states (PVGSs), quantum communications, quantum information, non-Gaussian quantum states
NIST · Quantum science · 2025-09-10
</div>
</div>


<div style="margin-top:8px;">
<div style="margin-top:8px;">
'''Article preview.'''<br>
'''Article preview.'''<br>
Researchers have established a new basis for quantum sensing and communication. Their<br>
A team including scientists at NIST may have found a new way of dealing with noise at<br>
theoretical approach for generating quantum states could be crucial for many areas,<br>
the microscopic scales where quantum physics reigns.<br>
ranging from fingerprinting the magnetic field of the Earth to enhancing astrophysical<br>
research.<br>
The article is featured here because it connects current quantum research with a<br>
The article is featured here because it connects current quantum research with a<br>
broader scientific or technological problem.<br>
broader scientific or technological problem.<br>
The preview highlights the main idea while leaving the detailed evidence, figures and<br>
The preview highlights the main idea while leaving the detailed evidence, figures and<br>
technical discussion to the original source.<br>
technical discussion to the original source.<br>
Topic area: Moe Win, MIT AeroAstro, MIT LIDS, MIT IDSS, Quantum neXus Laboratory,<br>
Topic area: Quantum science.<br>
quantum sensing, photon-varied Gaussian states (PVGSs), quantum communications,<br>
Publication or update date: 2025-09-10.<br>
quantum information, non-Gaussian quantum states.<br>
The selected source is NIST; the full article link appears below this preview.<br>
The selected source is MIT News | Massachusetts Institute of Technology; the full<br>
The right-side image is selected from the same article URL when a usable article image<br>
article link appears below this preview.
is available.<br>
Readers can follow the source link for the complete article, credits and surrounding<br>
context.
</div>
</div>


<div style="margin-top:8px;">
<div style="margin-top:8px;">
[https://news.mit.edu/2025/researchers-establish-new-basis-quantum-sensing-communication-0313 Read the full article at MIT News | Massachusetts Institute of Technology ->]
[https://www.nist.gov/news-events/news/2025/09/quantum-sensing-what-beats-beating-noise-meeting-noise-halfway Read the full article at NIST ->]
</div>
</div>


<div style="margin-top:8px; font-size:90%; color:#666;">
<div style="margin-top:8px; font-size:90%; color:#666;">
External source: MIT News | Massachusetts Institute of Technology. Selected external quantum article.
External source: NIST. Selected external quantum article.
</div>
</div>


<div style="margin-top:4px; font-size:90%; color:#666;">
<div style="margin-top:4px; font-size:90%; color:#666;">
Credits: MIT News | Massachusetts Institute of Technology
Credits: NIST · 2025-09-10
</div>
</div>


</div>
</div>

Latest revision as of 09:10, 25 May 2026

Image from or related to the featured external quantum article.

Featured external quantum article

In Quantum Sensing, What Beats Beating Noise? Meeting Noise Halfway.

NIST · Quantum science · 2025-09-10

Article preview.
A team including scientists at NIST may have found a new way of dealing with noise at
the microscopic scales where quantum physics reigns.
The article is featured here because it connects current quantum research with a
broader scientific or technological problem.
The preview highlights the main idea while leaving the detailed evidence, figures and
technical discussion to the original source.
Topic area: Quantum science.
Publication or update date: 2025-09-10.
The selected source is NIST; the full article link appears below this preview.
The right-side image is selected from the same article URL when a usable article image
is available.
Readers can follow the source link for the complete article, credits and surrounding
context.

External source: NIST. Selected external quantum article.

Credits: NIST · 2025-09-10