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Back|Chinese researchers develop room-temperature ultraprecise magnetic sensor
Chinese researchers develop room-temperature ultraprecise magnetic sensor
Science
SCMP News·55 minutes ago·Science·2 min read·🇨🇳China

Chinese researchers develop room-temperature ultraprecise magnetic sensor

The Levitated Magnet Magnetometer (LeMaMa) can detect magnetic signals a billion times fainter than the Earth’s field without cryogenic cooling.

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Researchers from Peking University and Johannes Gutenberg University Mainz have created the Levitated Magnet Magnetometer (LeMaMa), a room-temperature device capable of measuring magnetic fields at the femtotesla level, potentially aiding dark matter research and brain monitoring.

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Why It Matters

Femtotesla-level magnetic measurements previously required superconducting quantum interference devices (Squid) operating at cryogenic temperatures.

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Chinese researchers have developed a table-top magnetic sensor that operates at room temperature and can spot magnetic signals a billion times fainter than the Earth’s own field.

The Levitated Magnet Magnetometer (LeMaMa) functions like a compass with a needle that floats in mid-air with virtually no friction. By tracking the needle’s tiny deflections, the team can measure magnetic fields down to the femtotesla level – an advance that could widen the hunt for elusive dark matter particles or monitor brain signals.

“The combination of room-temperature operation, tiny components and high sensitivity makes LeMaMa promising for fundamental physics experiments,” Ji Wei, assistant professor at Peking University’s school of physics and corresponding author of the study, told Guangming Daily on August 17.

Magnetic fields are everywhere, ranging in strength from about 1.5 tesla for a hospital magnetic resonance imaging machine to the vanishingly weak femtotesla, or a quadrillionth of a tesla, generated by human brain activity. Measuring the tiniest magnetic fields has long been a challenge.

Now, scientists from China’s Peking University and Johannes Gutenberg University Mainz in Germany have built the world’s first room-temperature ultraprecise magnetometer based on a levitated magnet. Their work was published in the journal Science on August 6.

Until now, femtotesla-level measurements have mainly relied on two approaches. One is the superconducting quantum interference device (Squid) magnetometer, which offers excellent sensitivity but must operate at cryogenic temperatures near absolute zero, requiring bulky and expensive liquid-helium cooling.

Open Questions

  • ?What is the commercial scalability of the LeMaMa device?
  • ?How soon can this be applied to clinical brain monitoring?

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This article was originally published by SCMP News.

Quick Look

Researchers from Peking University and Johannes Gutenberg University Mainz have created the Levitated Magnet Magnetometer (LeMaMa), a room-temperature device capable of measuring magnetic fields at the femtotesla level, potentially aiding dark matter research and brain monitoring.

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Published
55 minutes ago
magnetometer
physics
peking university
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Ji Wei
Peking University
Johannes Gutenberg University Mainz
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Guangming Daily
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femtotesla
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