(Press-News.org) WASHINGTON – U.S. Naval Research Laboratory (NRL) researchers have developed a patent-pending Continuous 3D-Cooled Atom Beam Interferometer derived from a patented cold and continuous beam of atoms to explore atom-interferometry-based inertial measurement systems as a path to reduce drift in Naval navigation systems.
Inertial navigation is a self-contained navigation technique in which measurements provided by accelerometers and gyroscopes are used to track the position and orientation of an object relative to a known starting point, orientation and velocity. Quantum inertial navigation is a new field of research and development that can increase inertial measurement accuracy by orders of magnitude.
“Our interferometer operates in a different regime than most other modern implementations of an atom interferometer,” said Jonathan Kwolek, Ph.D., a research physicist from the NRL Quantum Optics Section within the Optical Sciences Division. “By operating with cold, continuous atoms, we have opened the door to a number of advantages as well as novel measurement techniques. Ultimately, we would like to use this technology to improve inertial navigation systems, thus reducing our reliance on GPS.”
Enabled by the unique properties of the atom source, the Continuous 3D-Cooled Atom Beam Interferometer exhibits promising measurement characteristics like high measurement contrast, low noise, and improved handling of variations in the sensor’s environment. This technology wields the potential to provide Navy the ability to operate in GPS-denied environments and overcome limitations to the accuracy of GPS.
Depending on the measurement platform, errors in the location estimation will accumulate and result in loss of accurate position information. Current commercially available inertial navigation systems, for example, can navigate with an error accumulation of roughly 1 nautical mile over 360 hours. NRL intends to develop new technologies to extend that time such that navigational drift does not limit mission duration.
“The field of inertial navigation aims to provide navigation information anywhere GPS is unavailable,” said NRL Associate Director of Research for Systems Dr. Gerald Borsuk. “The advent of atom interferometry allows for a novel approach in inertial sensing, which has the potential to address some of the deficiencies in current state-of-the-art technologies.”
GPS has become a backbone to the functionality of both our civilian and military world, providing high-accuracy distributed position and timing information anywhere in the world. However, there are certain battlespace environments in which GPS cannot function, such as underwater or in space, as well as an increasing threat to GPS availability in the form of jamming, spoofing, or anti-satellite warfare.
“In an ideal world, we hedge against loss of conventional navigation by making the best inertial navigators we can,” Kwolek said. “This is to ensure that a loss of GPS doesn’t allow our ships to become lost in the middle of enemy territory.”
Why use atom interferometers?
Interferometers are devices that extract information from interference using coherent waves. This class of device is widely used for the precise measurements of displacements, refractive index changes and surface topologies. Inertial navigation is used in a wide range of applications including the navigation of aircraft, tactical and strategic missiles, spacecraft, submarines, and ships.
Atomic physics offers a unique toolkit for measuring with extreme precision. Atom interferometry is a method within atomic physics in which quantum interference of atomic matter waves is used to measure extremely precise changes in environmental conditions, such as fields or inertial forces.
“Performing atomic inertial measurements as opposed to a classical measurement gives different error dependencies,” Kwolek said. “We predict that if done carefully, atomic interferometers will exhibit better long-term noise behavior and accuracy than current leading technologies. Translated to the world of inertial navigation, this means keeping your location fix for longer providing more operational flexibility.”
Atom interferometers can also be used to discipline another sensor, much like how clocks are disciplined to GPS. This combination of an interferometer with a cosensor can enable interferometers to realize a benefit in a real-world measurement scenario.
“This is by no means a complete solution,” Kwolek said. “There are tradeoffs to operating an atomic interferometer, for example, the enhanced sensitivity correlates to worse dynamic range. We are exploring multiple avenues to solving this problem including cosensor implementation or alternative cold-atom techniques.”
This quantum optics research is sponsored by the NRL Base Program and the Office of Naval Research.
The National Defense Authorization Act for Fiscal Year 2024 states that quantum technology is approaching a tipping point that will determine how quickly it can make an impact. If the United States can stay on pace, many important outcomes for the Department of Defense (DOD) can be realized including robust position, navigation and timing for DOD freedom of operations with precision strike even with contests in spectrum, space, or cyber operations.
A Navy less reliant on GPS
NRL has delivered navigation solutions to the fleet since its inception but a breakthrough occurred in the 1960s with the invention of GPS.
NRL launched TIMATION I on May 31, 1967, and TIMATION II on August 30, 1969. TIMATION I demonstrated that a surface vessel could be positioned to within two-tenths of a nautical mile and an aircraft to within three-tenths of a nautical mile using range measurements from a time-synchronized satellite.
While initially designed for use by the military, GPS has been adapted for civilian navigation needs ranging from commercial aviation to portable handheld and wristwatch-type devices. Today, GPS is a constellation of 32 Earth-orbiting satellites providing precise navigation and timing data to military and civilian end-users around the globe. Despite decades of development of GPS, optimized inertial navigation systems afford the Navy the ability to mitigate risk against becoming completely reliant on GPS.
“In the modern era, NRL is one of several research organizations addressing naval inertial navigation challenges,” said Adam Black, Ph.D., NRL Quantum Optics Section Head. “The lab is taking advantage of advanced atomic and optical techniques to invent new architectures for inertial measurement that promise accurate navigation of dynamic Navy platforms.”
About the U.S. Naval Research Laboratory
NRL is a scientific and engineering command dedicated to research that drives innovative advances for the U.S. Navy and Marine Corps from the seafloor to space and in the information domain. NRL is located in Washington, D.C. with major field sites in Stennis Space Center, Mississippi; Key West, Florida; Monterey, California, and employs approximately 3,000 civilian scientists, engineers and support personnel.
For more information, contact NRL Corporate Communications at (202) 480-3746 or nrlpao@us.navy.mil.
END
NRL charters Navy’s quantum inertial navigation path to reduce drift
2024-04-05
ELSE PRESS RELEASES FROM THIS DATE:
Portsmouth researchers enable detection of remarkable gravitational-wave signal
2024-04-05
Researchers from the University of Portsmouth’s Institute of Cosmology and Gravitation (ICG) have helped to detect a remarkable gravitational-wave signal, which could hold the key to solving a cosmic mystery.
The discovery is from the latest set of results announced today (5 April) by the LIGO-Virgo-KAGRA collaboration, which comprises more than 1,600 scientists from around the world, including members of the ICG, that seeks to detect gravitational waves and use them for exploration of fundamentals of science.
In May 2023, shortly after ...
Common loons threatened by declining water clarity
2024-04-05
The Common Loon, an icon of the northern wilderness, is under threat from climate change due to reduced water clarity, according to a new study authored by Chapman University professor, Walter Piper. The study, published April 1 in Ecology, followed up an earlier paper that showed substantial reproductive decline in the author’s study area in northern Wisconsin.
The paper is the first clear evidence demonstrating an effect of climate change on this charismatic species. Specifically, the paper shows that July rainfall results in reduced July water clarity in loon territories. Reduced water clarity, in turn, ...
Can language models read the genome? This one decoded mRNA to make better vaccines.
2024-04-05
The same class of artificial intelligence that made headlines coding software and passing the bar exam has learned to read a different kind of text — the genetic code.
That code contains instructions for all of life’s functions and follows rules not unlike those that govern human languages. Each sequence in a genome adheres to an intricate grammar and syntax, the structures that give rise to meaning. Just as changing a few words can radically alter the impact of a sentence, small variations in a biological sequence can make a huge ...
In the evolution of walking, the hip bone connected to the rib bones
2024-04-05
UNIVERSITY PARK, Pa. — Before the evolution of legs from fins, the axial skeleton — including the bones of the head, neck, back and ribs — was already going through changes that would eventually help our ancestors support their bodies to walk on land. A research team including a Penn State biologist completed a new reconstruction of the skeleton of Tiktaalik, the 375-million-year-old fossil fish that is one of the closest relatives to limbed vertebrates. The new reconstruction shows that the fish’s ribs likely attached to its pelvis, an innovation thought to be crucial to supporting the body and for the eventual evolution of walking.
A paper describing the new ...
Groundbreaking for new building named for former Sen. Roy Blunt held at Fisher Delta Research, Extension and Education Center
2024-04-05
A groundbreaking was held Friday, April 5, for the Roy Blunt Soil Testing and Research Laboratory at the University of Missouri’s Fisher Delta Research, Extension and Education Center (FD-REEC) in Portageville, Mo.
“As a longtime Delta Day attendee and Delta Center advocate, I’m pleased to have been part of spearheading a new facility that will support existing university programs while inspiring research among future generations of students,” former Sen. Blunt said. “It is an honor to have my name connected with this world-class facility ...
"The Fold", a new book from the SCA's Laura U. Marks offers a philosophy for living in an infinitely connected cosmos
2024-04-05
From star-stuff to software; hoagies to humans, each entity is alive and occupies its own private place in the cosmos.
Grant Strate University Professor in SFU’s School for the Contemporary Arts (SCA) Laura U. Marks’ new book The Fold offers a practical philosophy and aesthetic theory for living in an infinitely connected cosmos. Analyzing fiction, film, interactive media, and everyday situations, Marks outlines methods for detecting and augmenting the connections between each living entity and the cosmos.
The Fold shows it ...
Discovery points path to flash-like memory for storing qubits
2024-04-05
By Jade Boyd
Special Rice News
Rice University physicists have discovered a phase-changing quantum material — and a method for finding more like it — that could potentially be used to create flash-like memory capable of storing quantum bits of information, or qubits, even when a quantum computer is powered down.
Phase-changing materials have been used in commercially available non-volatile digital memory . In rewritable DVDs, for example, a laser is used to heat minute bits of material that cools to form either crystals or amorphous clumps. Two phases ...
Globalization in Photonics: an IEEE Photonics Journal Special Issue
2024-04-05
The IEEE Photonics Journal, the IEEE Photonics Society’s open access journal providing rapid publication of top-quality peer-reviewed papers at the forefront of photonics research, has released a Special Issue on "Globalization in Photonics", which provides a several detailed overviews of various worldwide developments in photonics. This all-invited special issue is a collection based on a series of presentations from the “Symposium on Globalization in Photonics Research & Development” at the ...
nTIDE March 2024 Jobs Report: Despite recent declines, people with disabilities remain engaged in the labor market
2024-04-05
East Hanover, NJ – April 5, 2024 – March job numbers showed minimal changes for people with disabilities, according to today’s National Trends in Disability Employment (nTIDE) semi-monthly update issued by Kessler Foundation and the University of New Hampshire’s Institute on Disability (UNH-IOD). Despite small declines in the employment-to-population ratio over the past four months, employment remains at historically high levels for people with disabilities. The small gain in their labor force participation rate is a positive sign that people with disabilities are still engaging in the labor market by looking for ...
UC Irvine-led research team builds first tandem repeat expansions genetic reference maps
2024-04-05
Irvine, Calif., April 5, 2024 — A research team led by the University of California, Irvine has built the first genetic reference maps for short lengths of DNA repeated multiple times which are known to cause more than 50 lethal human diseases, including amyotrophic lateral sclerosis, Huntington’s disease and multiple cancers.
The UC Irvine Tandem Genome Aggregation Database enables researchers to study how these mutations – called tandem repeat expansions – are connected to diseases, ...