Energy Free Superfast Computing Invented by Scientists Using Light Pulses

May 16, 2019

Superfast data processing using light pulses instead of electricity has been created by scientists. The invention uses magnets to record computer data that consume virtually zero energy, solving the dilemma of how to create faster data processing speeds without the accompanying high energy costs.

Today’s data centre servers consume between 2 to 5% of global electricity consumption, producing heat which in turn requires more power to cool the servers.  

The problem is so acute that Microsoft has even submerged hundreds of its data centre services in the ocean in an effort to keep them cool and cut costs.

Most data are encoded as binary information (0 or 1 respectively) through the orientation of tiny magnets, called spins, in magnetic hard-drives. The magnetic read/write head is used to set or retrieve information using electrical currents which dissipate huge amounts of energy.

Now an international team publishing in Nature www.nature.com/articles/s41586-019-1174-7 has solved the problem by replacing electricity with extremely short pulses of light — the duration of one trillionth of a second — concentrated by special antennas on top of a magnet.

This new method is superfast but so energy efficient that the temperature of the magnet does not increase at all.  

The team includes Dr. Rostislav Mikhaylovskiy, formerly at Radboud University and now Lancaster University, Stefan Schlauderer, Dr. Christoph Lange, and Professor Rupert Huber from Regensburg University, Professor Alexey Kimel from Radboud University, and Professor Anatoly Zvezdin from the Russian Academy of Sciences.

They demonstrated this new method by pulsing a magnet with ultrashort light bursts (the duration of a millionth of a millionth of a second) at frequencies in the far infrared, the so called terahertz spectral range. 

However, even the strongest existing sources of the terahertz light did not provide strong enough pulses to switch the orientation of a magnet to date. 

The breakthrough was achieved by utilizing the efficient interaction mechanism of coupling between spins and terahertz electric field, which was discovered by the same team. 

The scientists then developed and fabricated a very small antenna on top of the magnet to concentrate and thereby enhance the electric field of light. This strongest local electric field was sufficient to navigate the magnetization of the magnet to its new orientation in just one trillionth of a second.

The temperature of the magnet did not increase at all as this process requires energy of only one quantum of the terahertz light — a photon — per spin. 

“The record-low energy loss makes this approach scalable,” says Dr. Mikhaylovskiy. “Future storage devices would also exploit the excellent spatial definition of antenna structures enabling practical magnetic memories with simultaneously maximal energy efficiency and speed.” 

He plans to carry out further research using the new ultrafast laser at Lancaster University together with accelerators at the Cockroft Institute which are able to generate intense pulses of light to allow switching magnets and to determine the practical and fundamental speed and energy limits of magnetic recording.  

Photo source: Brad Baxley (parttowhole.com)

Related Articles


Changing Scene


Design

  • CSC LED: Spotted On-Site – Brantford School Lighting Upgrade

    CSC LED: Spotted On-Site – Brantford School Lighting Upgrade

    Upgrading lighting in educational spaces isn’t just about energy savings — it’s about creating environments where students and staff can see clearly, feel comfortable, and stay focused throughout the day. Recently in Brantford, ON, a local school refreshed both its cafeteria and hallways by replacing dim, green-tinted legacy fixtures with CSC LED flat panels. The… Read More…

  • Omnify: 7 Common Light Panel Mistakes (And How to Fix Them)

    Omnify: 7 Common Light Panel Mistakes (And How to Fix Them)

    You’ve invested in premium LED light guide panels for your retail display or commercial project. The specs looked perfect. The samples were gorgeous. But now? Something’s off. Maybe the lighting is uneven, or panels are starting to fail way before they should. Here’s the thing, most LED light guide panel problems aren’t manufacturing defects. They’re… Read More…


New Products

  • Peerless Electric: Arclux Series TB-LI – Grill Panel Light

    Peerless Electric: Arclux Series TB-LI – Grill Panel Light

    Discover the Arclux Series TB-LI LED luminaire for recessed installation. Easy push-in T-bar grill panel lights with aluminum body and optical polycarbonate diffuser, providing a distribution of 115°. The Arclux Series TB-LI LED fixtures are widely used in offices, residences, factories, supermarkets, hotels, restaurants, and schools. Read More…

  • SATCO|NUVO: LED Adjustable Wall Packs – Field Selectable

    SATCO|NUVO: LED Adjustable Wall Packs – Field Selectable

    Engineered for directional performance and on-site flexibility, these LED Adjustable Wall Packs deliver targeted outdoor illumination with precision control. Offered in small and large configurations, each fixture features its own dedicated wattage package and is field selectable—allowing you to choose from three wattages and three-color temperatures at installation to match your exact project requirements. The… Read More…