Computing

Interplanetary Broadband

Highly sensitive light detectors could enable streaming video from Mars and longer-distance quantum cryptography.

  • Tuesday, January 31, 2006
  • By Kevin Bullis

Manned missions to Mars would benefit from high-speed communications, even streaming video, rather than the clunky, hours-long image downloads from the likes of the Cassini-Huygens Saturn probe. Conventional optical communication can carry such video data, but the lasers needed to transmit a readable signal for interplanetary distances would require far too much power.

This has some researchers looking to single-photon detectors -- the ultimate low-light sensors -- to make it possible to detect relatively low-power laser signals. So far, however, such detectors have been either inefficient, missing most of the photons sent to them, or too slow for high-bandwidth data. Now a nanotechnology-based device, reported this week in the journal Optics Express, combines efficiency and speed, promising to make such interplanetary communication more practical. The detector might also allow long-distance, secure communications, perhaps for collecting data from unmanned military aerial vehicles such as the Predator.

Advertisement

"The detection of extraordinarily low levels of light with high bandwidth has been a challenge for many years," says Karl Berggren, an electrical engineering professor at MIT who helped develop the new device. "This demonstration illustrates what nanotechnology, and in particular nanofabrication, can do when applied to a problem like this."

The researchers started with an earlier single-photon detector design that could keep up with data rates about eight times faster than a typical office Ethernet connection. But that test confirmed rates only for data transmitted across a lab. In applications where one can't simply turn up the power of the laser and send more photons, such as on power-starved space missions, keeping up the rate of transmission requires a more efficient sensor.

The answer was to add a photon trap. The heart of the detector, which has been around for a couple of years, is a wire 100 nanometers wide that meanders like coils on a refrigerator to increase the area of detection. The wire is cooled to just above absolute zero, at which temperature it becomes a superconductor. When a photon hits the wire and is absorbed, the wire heats up just enough to stop superconducting, creating a detectable jump in resistance.

In the new design, the photons that slip past or reflect off the wire bounce around in the photon trap, giving them more chances to be absorbed by the wire. The trap, with a little help from an antireflective coating, approximately tripled the efficiency of previous detection efforts.

The efficiency is "a huge jump forward," says Jeffrey Stern at the Jet Propulsion Laboratory. Indeed, he says this efficiency is enough for optical communication in space.

Print

Related Articles

A Quantum Leap in Cryptography

Encryption products that use the principles of quantum mechanics are becoming more accessible to companies and government agencies.

TR 100 Nanotech

Tools and materials from the nano world are making headway in electronics, sensors, medical devices, and diagnostics

The Next Generation of Optical Fibers

Novel "photonic-band-gap materials" promise to light up the pipes of the telecom network. Their breakthrough? They carry signals through air rather than glass.

Close Comments

To comment, please sign in or register

Forgot my password

Guest (Paul Jean)

  • 2205 Days Ago
  • 01/31/2006

Comaprison to Laser Comm

Can you tell me a little more about this technique for comaprison to the current laser comm technique for the aspects of EMI; Free Space Loss; cost, schedule, and risk to implement for military and commercial applications

Paul Jean

Reply

Guest (Keith)

  • 2026 Days Ago
  • 07/29/2006

Low Power Lazers and fiber optics

What is the chances of eventually developing carbon nanotube computers with low power fiber optics between chips for really low power consumption in supercomputers.

Reply

Advertisement

MAGAZINE

Can We Build Tomorrow's Breakthroughs?

Manufacturing in the United States is in trouble. That's bad news not just for the country's economy but for the future of innovation.

Sponsored Content

Technologies from National Instruments

Adding Data Logging
Log measured data to a file and open it in Microsoft Excel

> Click here for more National Instruments Videos <
Whitepaper

Temperature Measurements with Thermocouples: How-To Guide

This document is part of the “How-To Guide for Most Common Measurements” centralized resource portal. This tutorial provides a detailed guide for measurement and device considerations to take temperature measurements using thermocouples. Get an introduction to thermocouples, which are inexpensive sensing devices widely used with PC-based data acquisition systems. Also review some specific thermocouple examples and learn how thermocouples work and ways to integrate them into a data acquisition measurement system.

View full PDF > Listen to story >
Find us on Youtube

Videos

A Robot Recruit that Can Do It All

More

Advertisement

Technology Review Lists

TR50

Our list of the 50 most innovative companies, including the following:

Akamai

Amazon.com

A123 Systems

eSolar

More

Advertisement

Facebook

Advertisement