Skip to main content

Intel’s Silicon laser

Working with the basic material of computer chips, Intel Corp. researchers have constructed an all-silicon laser that could lead to computers one day harnessing light waves rather than electrical currents to shuttle data swiftly.

Today, lasers that power fast optical networks require exotic — and expensive — materials and are mainly used in vast communications networks. With everyday silicon, the capacity and efficiency of light waves could be used cheaply in much smaller environments.

As a result, the movement of data within computers would keep up with the ever-increasing speed of microprocessors, breaking through an increasingly problematic bottleneck that exists for users of complex programs, such as video editors, large businesses and governments.

Silicon lasers also could be mass produced, using the same equipment on which standard chips are made.

But silicon, the semiconductor that makes up computer memory and logic chips, has only recently been considered for use in photonics, or light-based technology — and it promises to revolutionize that field as it did electronics.

“Once you have silicon as an optical material, then you can take advantage of this enormous (silicon) infrastructure that exists around the world,” said Mario Paniccia, director of Intel’s photonics lab. “You can imagine starting to siliconize photonic devices, and maybe integrate photonics and electronics.”

The Intel research, co-authored by Paniccia and posted on the journal Nature’s Web site Wednesday, involved creating a laser with a single silicon chip. Like all lasers, it emitted a focused stream of light that ultimately could be manipulated to carry vast amounts of data at high speeds.

Laser beams are usually created by exciting atoms of polished crystal rods, gases or vapors, dyes or semiconductors with electricity or light. That boosts the atoms’ electrons to higher energy levels. When they fall back, photons, the basic element of light, are released. The photons are then bounced back and forth as in an echo chamber before they’re beamed out to create a concentrated light source.

With silicon, the situation is more complicated. Because of silicon’s crystalline makeup, energy from stimulated electrons is released as heat and vibration. To make a laser, researchers instead rely on a weak but precise scattering of photons called the Raman effect.

Silicon is a particularly good material for Raman lasers, which are already being used in long-haul telecommunications networks known as backbones. With silicon, the effect is 10,000 times stronger than in the glass fiber used in today’s Raman lasers, Paniccia said.

Last year, researchers at the University of California, Los Angeles demonstrated the first silicon-based Raman laser. It relied on a fiber loop for the echo chamber-like component that concentrates photons before emission, however.

The Intel research incorporated that into the single silicon chip, which could be more easily integrated into a computer, said Bahram Jalali, a UCLA electrical engineering professor.

“It’s the next natural step in the evolution of the silicon Raman laser,” he said.

Next in the increasingly competitive field is to produce a device that emits a continuous beam. That would be more useful for communications than the light pulses that have been generated so far, Paniccia said.

Ultimately, silicon-based lasers and other optical devices could be used to break through bottlenecks in the data paths between chips inside computers.

“Our goal is to drive this technology to a point where we actually converge communications and computing,” Paniccia said.

Editors' Recommendations

Digital Trends Staff
Digital Trends has a simple mission: to help readers easily understand how tech affects the way they live. We are your…
Get this LaserJet printer for $119 in HP’s Memorial Day sale
HP LaserJet Pro MFP 3101fdw printer looks nice on a white stand beside plants.

With the big shift to working from home, printers have become an important part of everyday life, even if you don't really use one regularly, and while some of the best printers from the best printer brands can be very expensive, some budget-friendly versions are not. So, if you don't do a ton of printing on a day-to-day basis, a budget printer like the HP LaserJet M209dw is the way to go, and there's even a solid Memorial Day discount on it directly from HP. While it usually goes for $149, you can grab it now for just $119, which is a nice $30 knocked off the price.

Why you should buy the HP LaserJet M209dw Printer
The HP LaserJet M209dw is a monochrome printing laser that's great for things like text documents or even character sheets for those who want to play tabletop roleplaying games. It can print at a very impressive 30 ppm, so your prints will be done relatively quickly, while the monthly recommended print volume of between 200 and 2,000 pages should be more than enough for most needs. The 600 x 600 dpi resolution isn't too bad, although it is on the lower end, which is to be expected at this price point.

Read more
Intel Battlemage graphics cards: release date speculation, price, specs, and more
Intel Arc A770 GPU installed in a test bench.

Despite a rocky start, Intel's Arc GPUs are now among the best graphics cards you can buy. Targeting budget PC gamers, Intel has established itself as a major player in gaming graphics cards, and all eyes are on Team Blue with its next generation of GPUs, codenamed Battlemage.

We know Battlemage GPUs are coming, and Intel has slowly been dropping hints about the graphics cards over the past year. Although we're still waiting on an official release date, specs, and pricing details for Battlemage GPUs, there's a lot we can piece together already.
Intel Battlemage: specs

Read more
Intel is ready for Copilot+ PCs with Lunar Lake
On-package memory on Intel Meteor Lake processors.

The talk of the town in the world of PCs is Snapdragon's new X Elite processor, but Intel wants you to know it's not down for the count in this new era of Copilot+ PCs. The company is previewing its next-generation Lunar Lake CPUs before it fully reveals them at Computex 2024, and they sound like a massive upgrade.

Although we saw a neural processing unit (NPU), which is used for AI tasks, in Intel's last-gen Meteor Lake chips, it wasn't that powerful. Snapdragon all but nullified Meteor Lake by announcing the X Elite, which has an NPU capable of 45 trillion operations per second (TOPS). That's more than four times what Meteor Lake's NPU was capable of.

Read more