Artist Impression of a superconducting chip. Credit: TU Delft
Associate professor Mazhar Ali and his research group at Delft University of Technology (TU Delft) have discovered one-way superconductivity without magnetic fields, something that was thought to be impossible ever since its discovery in 1911 until now. The discovery, published in the journal Nature, makes use of 2D quantum materials and paves the way toward superconducting computing. Superconductors can make electronics hundreds of times faster, all with zero energy loss.
Ali: If the 20th century was the century of semiconductors, the 21st can become the century of the superconductor.
Throughout the twentieth century, many scientists, including Nobel laureates, struggled over the nature of superconductivity, which was discovered in 1911 by Dutch physicist Kamerlingh Onnes. In superconductors, a current flows across a wire with no resistance, which means inhibiting this current or even blocking it is hardly possible let alone getting the current to flow only one way and not the other. The fact that Alis group was able to make superconducting one-directional which is required for computing is remarkable: its like inventing a special type of ice that has zero friction one way but insurmountable friction the other.
The advantages of applying superconductors to electronics are twofold. Superconductors can make electronics hundreds of times faster, and incorporating superconductors into our daily lives would make IT much more eco-friendly: if you spun a superconducting wire from here to the moon, it would transport the energy without any loss. For instance, the use of superconductors instead of regular semiconductors might save up to 10% of all western energy reserves according to NWO.
According to the Dutch Research Council (NWO), using superconductors instead of conventional semiconductors might save up to 10% of all Western energy reserves.
In the 20th century and beyond, no one could tackle the barrier of making superconducting electrons go in just one-direction, which is a fundamental property needed for computing and other modern electronics (consider for example diodes that go one way as well). In normal conduction the electrons fly around as separate particles; in superconductors they move in pairs of twos, without any loss of electrical energy. In the 70s, scientists at IBM tried out the idea of superconducting computing but had to stop their efforts: in their papers on the subject, IBM mentions that without non-reciprocal superconductivity, a computer running on superconductors is impossible.
Superconductivity is a set of physical properties seen in some materials in which electrical resistance disappears and magnetic flux fields are expelled. A superconductor is any substance that possesses these qualities.
Q: Why, when one-way direction works with normal semi-conduction, has one-way superconductivity never worked before?
Mazhar Ali: Electrical conduction in semiconductors, like Si, can be one-way because of a fixed internal electric dipole, so a net built in potential they can have. The textbook example is the famous pn junction; where we slap together two semiconductors: one has extra electrons (-) and the other has extra holes (+). The separation of charge makes a net built-in potential that an electron flying through the system will feel. This breaks symmetry and can result in one-way properties because forward vs backward, for example, are no longer the same. There is a difference in going in the same direction as the dipole vs going against it; similar to if you were swimming with the river or swimming up the river.
Superconductors never had an analog of this one-directional idea without magnetic field; since they are more related to metals (i.e. conductors, as the name says) than semiconductors, which always conduct in both directions and dont have any built-in potential. Similarly, Josephson Junctions (JJs), which are sandwiches of two superconductors with non-superconducting, classical barrier materials in-between the superconductors, also havent had any particular symmetry-breaking mechanism that resulted in a difference between forward and backward.
Q: How did you manage to do what first seemed impossible?
Ali: It was really the result of one of my groups fundamental research directions. In what we call Quantum Material Josephson Junctions (QMJJs), we replace the classical barrier material in JJs with a quantum material barrier, where the quantum materials intrinsic properties can modulate the coupling between the two superconductors in novel ways. The Josephson Diode was an example of this: we used the quantum material Nb3Br8, which is a 2D material like graphene that has been theorized to host a net electric dipole, as our quantum material barrier of choice and placed it between two superconductors.
We were able to peel off just a couple atomic layers of this Nb3Br8 and make a very, very thin sandwich just a few atomic layers thick which was needed for making the Josephson diode, and was not possible with normal 3D materials. Nb3Br8, is part of a group of new quantum materials being developed by our collaborators, Professor Tyrel McQueens and his group at Johns Hopkins University in the USA, and was a key piece in us realizing the Josephson diode for the first time.
Q: What does this discovery mean in terms of impact and applications?
Ali: Many technologies are based on old versions of JJ superconductors, for example, MRI technology. Also, quantum computing today is based on Josephson Junctions. Technology that was previously only possible using semiconductors can now potentially be made with superconductors using this building block. This includes faster computers, as in computers with up to terahertz speed, which is 300 to 400 times faster than the computers we are now using. This will influence all sorts of societal and technological applications. If the 20th century was the century of semiconductors, the 21st can become the century of the superconductor.
The first research direction we have to tackle for commercial application is raising the operating temperature. Here we used a very simple superconductor that limited the operating temperature. Now we want to work with the known so-called High Tc Superconductors, and see whether we can operate Josephson diodes at temperatures above 77 K, since this will allow for liquid nitrogen cooling. The second thing to tackle is scaling of production. While its great that we proved this works in nanodevices, we only made a handful. The next step will be to investigate how to scale production to millions of Josephson diodes on a chip.
Q: How sure are you of your case?
Ali: There are several steps which all scientists need to take to maintain scientific rigor. The first is to make sure their results are repeatable. In this case we made many devices, from scratch, with different batches of materials, and found the same properties every time, even when measured on different machines in different countries by different people. This told us that the Josephson diode result was coming from our combination of materials and not some spurious result of dirt, geometry, machine or user error or interpretation.
We also carried out smoking gun experiments that dramatically narrows the possibility for interpretation. In this case, to be sure that we had a superconducting diode effect we actually tried switching the diode; as in we applied the same magnitude of current in both forward and reverse directions and showed that we actually measured no resistance (superconductivity) in one direction and real resistance (normal conductivity) in the other direction.
We also measured this effect while applying magnetic fields of different magnitudes and showed that the effect was clearly present at 0 applied field and gets killed by an applied field. This is also a smoking gun for our claim of having a superconducting diode effect at zero-applied field, a very important point for technological applications. This is because magnetic fields at the nanometer scale are very difficult to control and limit, so for practical applications, it is generally desired to operate without requiring local magnetic fields.
Q: Is it realistic for ordinary computers (or even the supercomputers of KNMI and IBM) to make use of superconducting?
Ali: Yes it is! Not for people at home, but for server farms or for supercomputers, it would be smart to implement this. Centralized computation is really how the world works now-a-days. Any and all intensive computation is done at centralized facilities where localization adds huge benefits in terms of power management, heat management, etc. The existing infrastructure could be adapted without too much cost to work with Josephson diode based electronics. There is a very real chance, if the challenges discussed in the other question are overcome, that this will revolutionize centralized and supercomputing!
On May 18th 19th, Professor Mazhar Ali and his collaborators Prof. Valla Fatemi (Cornell University) and Dr. Heng Wu (TU Delft) are hosting a Superconducting Diode Effects Workshop on the Virtual Science Forum, in which 12 international experts in the field will be giving recorded talks online (to be published on YouTube) about the current state of the field as well as future research and development directions.
Reference: The field-free Josephson diode in a van der Waals heterostructure 27 April 2022, Nature.DOI: 10.1038/s41586-022-04504-8
Associate professor Mazhar Ali studied at UC Berkeley and Princeton and did his postdoc at IBM and won the Sofia Kovalevskaja Award from the Alexander von Humboldt Foundation in Germany before joining the faculty of Applied Sciences in Delft.
Excerpt from:
Breakthrough Discovery of the One-Way Superconductor Thought To Be Impossible - SciTechDaily
- Global AI Chipsets Markets 2019-2024 for Wireless Networks and Devices, Cloud and Next Generation Computing, IoT, and Big Data Analytics -... [Last Updated On: December 3rd, 2019] [Originally Added On: December 3rd, 2019]
- AWS re:Invent re:turns with re:vised robo-car and Windows Server 2008 re:vitalization plan - The Register [Last Updated On: December 3rd, 2019] [Originally Added On: December 3rd, 2019]
- Researchers Discover New Way to Split and Sum Photons with Silicon - UT News | The University of Texas at Austin [Last Updated On: December 3rd, 2019] [Originally Added On: December 3rd, 2019]
- First quantum computing conference to take place in Cambridge - Cambridge Independent [Last Updated On: December 3rd, 2019] [Originally Added On: December 3rd, 2019]
- Amazon is now offering quantum computing as a service with Braket for AWS - The Verge [Last Updated On: December 3rd, 2019] [Originally Added On: December 3rd, 2019]
- Quantum Computers Are About to Forever Change Car Navigation - autoevolution [Last Updated On: December 7th, 2019] [Originally Added On: December 7th, 2019]
- How Countries Are Betting on to Become Supreme in Quantum Computing - Analytics Insight [Last Updated On: December 7th, 2019] [Originally Added On: December 7th, 2019]
- Quantum Trends And The Internet of Things - Forbes [Last Updated On: December 7th, 2019] [Originally Added On: December 7th, 2019]
- This Week in Tech: What on Earth Is a Quantum Computer? - The New York Times [Last Updated On: December 7th, 2019] [Originally Added On: December 7th, 2019]
- InfoQ's 2019, and Software Predictions for 2020 - InfoQ.com [Last Updated On: December 9th, 2019] [Originally Added On: December 9th, 2019]
- Breakthrough in creation of gamma ray lasers that use antimatter - Big Think [Last Updated On: December 9th, 2019] [Originally Added On: December 9th, 2019]
- Quantum supremacy is here, but smart data will have the biggest impact - Quantaneo, the Quantum Computing Source [Last Updated On: December 9th, 2019] [Originally Added On: December 9th, 2019]
- Quantum Computers Are the Ultimate Paper Tiger - The National Interest Online [Last Updated On: December 9th, 2019] [Originally Added On: December 9th, 2019]
- Atos Boosts Quantum Application Development Through the Creation of the First Quantum User Group - AiThority [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- Shaping the technology transforming our society | News - Fermi National Accelerator Laboratory [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- Inside the weird, wild, and wondrous world of quantum video games - Digital Trends [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- China is beating the US when it comes to quantum security - MIT Technology Review [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- Double eureka: Breakthroughs could lead to quantum 'FM radio' and the end of noise - The Next Web [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- D-Wave partners with NEC to build hybrid HPC and quantum apps - TechCrunch [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- Quantum computing will be the smartphone of the 2020s, says Bank of America strategist - MarketWatch [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- Quantum computing leaps ahead in 2019 with new power and speed - CNET [Last Updated On: December 12th, 2019] [Originally Added On: December 12th, 2019]
- The Hits And Misses Of AWS re:Invent 2019 - Forbes [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- Technology to Highlight the Next 10 Years: Quantum Computing - Somag News [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- How quantum computing is set to impact the finance industry - IT Brief New Zealand [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- Will quantum computing overwhelm existing security tech in the near future? - Help Net Security [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- Quantum expert Robert Sutor explains the basics of Quantum Computing - Packt Hub [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- ProBeat: AWS and Azure are generating uneasy excitement in quantum computing - VentureBeat [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- Could quantum computing be the key to cracking congestion? - SmartCitiesWorld [Last Updated On: December 14th, 2019] [Originally Added On: December 14th, 2019]
- D-Wave Announces Promotion of Dr. Alan Baratz to CEO - GlobeNewswire [Last Updated On: December 15th, 2019] [Originally Added On: December 15th, 2019]
- What Was The Most Important Physics Of 2019? - Forbes [Last Updated On: December 18th, 2019] [Originally Added On: December 18th, 2019]
- AI, 5G, 'ambient computing': What to expect in tech in 2020 and beyond - USA TODAY [Last Updated On: December 18th, 2019] [Originally Added On: December 18th, 2019]
- What WON'T Happen in 2020: 5G Wearables, Quantum Computing, and Self-Driving Trucks to Name a Few - Business Wire [Last Updated On: December 18th, 2019] [Originally Added On: December 18th, 2019]
- How quantum computing could beat climate change - World Economic Forum [Last Updated On: December 18th, 2019] [Originally Added On: December 18th, 2019]
- How Quantum Computers Work | HowStuffWorks [Last Updated On: December 18th, 2019] [Originally Added On: December 18th, 2019]
- Quantum Computing Market Increase In Analysis & Development Activities Is More Boosting Demands - Market Research Sheets [Last Updated On: December 20th, 2019] [Originally Added On: December 20th, 2019]
- IBM partners with the University of Tokyo on quantum computing initiative - SiliconANGLE News [Last Updated On: December 20th, 2019] [Originally Added On: December 20th, 2019]
- 2020 and beyond: Tech trends and human outcomes - Accountancy Age [Last Updated On: December 20th, 2019] [Originally Added On: December 20th, 2019]
- IBM and the U. of Tokyo launch quantum computing initiative for Japan | - University Business [Last Updated On: December 20th, 2019] [Originally Added On: December 20th, 2019]
- The Quantum Computing Decade Is ComingHeres Why You Should Care - Observer [Last Updated On: December 20th, 2019] [Originally Added On: December 20th, 2019]
- Quantum Technology Expert to Discuss Quantum Sensors for Defense Applications at Office of Naval Research (ONR) - Business Wire [Last Updated On: December 23rd, 2019] [Originally Added On: December 23rd, 2019]
- IBM and Japan join hands in the development of quantum computers - Neowin [Last Updated On: December 23rd, 2019] [Originally Added On: December 23rd, 2019]
- IBM and the University of Tokyo Launch Quantum Computing Initiative for Japan - Martechcube [Last Updated On: December 23rd, 2019] [Originally Added On: December 23rd, 2019]
- IBM and the University of Tokyo partner to advance quantum computing - Help Net Security [Last Updated On: December 23rd, 2019] [Originally Added On: December 23rd, 2019]
- Reflections on 2019 in Technology Law, and a Peek into 2020 - Lexology [Last Updated On: December 24th, 2019] [Originally Added On: December 24th, 2019]
- IBM and the University of Tokyo Launch Quantum Computing Initiative for Japan - Quantaneo, the Quantum Computing Source [Last Updated On: December 24th, 2019] [Originally Added On: December 24th, 2019]
- 2020 Will be a Banner Year for AI Custom Chipsets and Heterogenous Computing; Quantum Computing Remains on the Far Horizon - Yahoo Finance [Last Updated On: December 24th, 2019] [Originally Added On: December 24th, 2019]
- IBM, University of Tokyo Partner on Quantum Computing Project - Yahoo Finance [Last Updated On: December 24th, 2019] [Originally Added On: December 24th, 2019]
- What's Not Likely To Happen In 2020 - RTInsights [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- From space tourism to robo-surgeries: Investors are betting on the future like there's no tomorrow - Financial Post [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- 2020 will be the beginning of the tech industry's radical revisioning of the physical world - TechCrunch [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- Same Plastic That Make Legos Could Also Be The Best Thermal Insulators Used in Quantum Computers - KTLA Los Angeles [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- Information teleported between two computer chips for the first time - New Atlas [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- How This Breakthrough Makes Silicon-Based Qubit Chips The Future of Quantum Computing - Analytics India Magazine [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- Quantum Computing Breakthrough: Silicon Qubits Interact at Long-Distance - SciTechDaily [Last Updated On: December 27th, 2019] [Originally Added On: December 27th, 2019]
- Donna Strickland appointed to Order of Canada - University of Rochester [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- 20 technologies that could change your life in the next decade - Economic Times [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- 5 open source innovation predictions for the 2020s - TechRepublic [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- Quantum Supremacy and the Regulation of Quantum Technologies - The Regulatory Review [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- Physicists Just Achieved The First-Ever Quantum Teleportation Between Computer Chips - ScienceAlert [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- The 12 Most Important and Stunning Quantum Experiments of 2019 - Livescience.com [Last Updated On: December 30th, 2019] [Originally Added On: December 30th, 2019]
- Quantum Teleportation Has Been Achieved With the Help of Quantum Entanglement - Dual Dove [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- Top 5 Cloud Computing Trends of 2020 - Analytics Insight [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- News Content Hub - Five emerging technologies for the 2020s - Riviera Maritime Media [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- US Government Looks To Restrict Exports Of AI, Quantum Computing And Self-Driving Tech - WebProNews [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- Year 2019 in Science: History of Humans, Ebola Treatment and Quantum Computing - NewsClick [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- Superconductor or not? They're exploring the identity crisis of this weird quantum material. - News@Northeastern [Last Updated On: January 4th, 2020] [Originally Added On: January 4th, 2020]
- The World Keeps Growing Smaller: The Reinvention Of Finance - Seeking Alpha [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- Goldman Sachs and QC Ware Join Forces to Develop Quantum Algorithms in Finance - Quantaneo, the Quantum Computing Source [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- January 9th: France will unveil its quantum strategy. What can we expect from this report? - Quantaneo, the Quantum Computing Source [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- Where will technology take us in 2020? - Digital News Asia [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- Superconductor or Not? Exploring the Identity Crisis of This Weird Quantum Material - SciTechDaily [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- AI, ML and quantum computing to cement position in 2020: Alibabas Jeff Zhang - Tech Observer [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- AI, edge computing among Austin tech trends to watch in 2020 - KXAN.com [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- Charles Hoskinson Predicts Economic Collapse, Rise of Quantum Computing, Space Travel and Cryptocurrency in the 2020s - The Daily Hodl [Last Updated On: January 8th, 2020] [Originally Added On: January 8th, 2020]
- Global Quantum Computing Market: What it got next? Find out with the latest research available at PMI - Pro News Time [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]
- Is Quantum Technology The Future Of The World? - The Coin Republic [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]
- Were approaching the limits of computer power we need new programmers now - The Guardian [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]
- Google and IBM square off in Schrodingers catfight over quantum supremacy - The Register [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]
- Start-ups join Google, SpaceX and OneWeb to bring new technologies to space - CNBC [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]
- Bleeding edge information technology developments - IT World Canada [Last Updated On: January 12th, 2020] [Originally Added On: January 12th, 2020]