Missing Piece Discovered in the Puzzle of Optical Quantum Computing – SciTechDaily
By Washington University In St. LouisJune 30, 2021
Jung-Tsung Shen, associate professor in the Department of Electrical & Systems Engineering, has developed a deterministic, high-fidelity, two-bit quantum logic gate that takes advantage of a new form of light. This new logic gate is orders of magnitude more efficient than the current technology. Credit: Jung-Tsung Shen
An efficient two-bit quantum logic gate has been out of reach, until now.
Research from the McKelvey School of Engineering at Washington University in St. Louis has found a missing piece in the puzzle of optical quantum computing.
Jung-Tsung Shen, associate professor in the Preston M. Green Department of Electrical & Systems Engineering, has developed a deterministic, high-fidelity two-bit quantum logic gate that takes advantage of a new form of light. This new logic gate is orders of magnitude more efficient than the current technology.
In the ideal case, the fidelity can be as high as 97%, Shen said.
His research was published in May 2021 in the journalPhysical Review A.
The potential of quantum computers is bound to the unusual properties of superposition the ability of a quantum system to contain many distinct properties, or states, at the same time and entanglement two particles acting as if they are correlated in a non-classical manner, despite being physically removed from each other.
Where voltage determines the value of a bit (a 1 or a 0) in a classical computer, researchers often use individual electrons as qubits, the quantum equivalent. Electrons have several traits that suit them well to the task: they are easily manipulated by an electric or magnetic field and they interact with each other. Interaction is a benefit when you need two bits to be entangled letting the wilderness of quantum mechanics manifest.
But their propensity to interact is also a problem. Everything from stray magnetic fields to power lines can influence electrons, making them hard to truly control.
For the past two decades, however, some scientists have been trying to use photons as qubits instead of electrons. If computers are going to have a true impact, we need to look into creating the platform using light, Shen said.
Photons have no charge, which can lead to the opposite problems: they do not interact with the environment like electrons, but they also do not interact with each other. It has also been challenging to engineer and to create ad hoc (effective) inter-photon interactions. Or so traditional thinking went.
Less than a decade ago, scientists working on this problem discovered that, even if they werent entangled as they entered a logic gate, the act of measuring the two photons when they exited led them to behave as if they had been.The unique features of measurement are another wild manifestation of quantum mechanics.
Quantum mechanics is not difficult, but its full of surprises, Shen said.
The measurement discovery was groundbreaking, but not quite game-changing. Thats because for every 1,000,000 photons, only one pair became entangled. Researchers have since been more successful, but, Shen said, Its still not good enough for a computer, which has to carry out millions to billions of operations per second.
Shen was able to build a two-bit quantum logic gate with such efficiency because of the discovery of a new class of quantum photonic states photonic dimers, photons entangled in both space and frequency. His prediction of their existence was experimentally validated in 2013, and he has since been finding applications for this new form of light.
When a single photon enters a logic gate, nothing notable happens it goes in and comes out. But when there are two photons, Thats when we predicted the two can make a new state, photonic dimers. It turns out this new state is crucial.
High-fidelity, two-bit logic gate, designed by Jung-Tsung Shen. Credit: Jung-Tsung Shen
Mathematically, there are many ways to design a logic gate for two-bit operations. These different designs are called equivalent. The specific logic gate that Shen and his research group designed is the controlled-phase gate (or controlled-Z gate). The principal function of the controlled-phase gate is that the two photons that come out are in the negative state of the two photons that went in.
In classical circuits, there is no minus sign, Shen said. But in quantum computing, it turns out the minus sign exists and is crucial.
Quantum mechanics is not difficult, but its full of surprises.
Jung-Tsung Shen
When two independent photons (representing two optical qubits) enter the logic gate, The design of the logic gate is such that the two photons can form a photonic dimer, Shen said. It turns out the new quantum photonic state is crucial as it enables the output state to have the correct sign that is essential to the optical logic operations.
Shen has been working with the University of Michigan to test his design, which is a solid-state logic gate one that can operate under moderate conditions. So far, he says, results seem positive.
Shen says this result, while baffling to most, is clear as day to those in the know.
Its like a puzzle, he said. It may be complicated to do, but once its done, just by glancing at it, you will know its correct.
Reference: Two-photon controlled-phase gates enabled by photonic dimers by Zihao Chen, Yao Zhou, Jung-Tsung Shen, Pei-Cheng Ku and Duncan Steel, 21 May 2021, Physical Review A.DOI: 10.1103/PhysRevA.103.052610
This research was supported by the National Science Foundation, ECCS grants nos. 1608049 and 1838996. It was also supported by the 2018 NSF Quantum Leap (RAISE) Award.
The McKelvey School of Engineering at Washington University in St. Louis promotes independent inquiry and education with an emphasis on scientific excellence, innovation and collaboration without boundaries. McKelvey Engineering has top-ranked research and graduate programs across departments, particularly in biomedical engineering, environmental engineering and computing, and has one of the most selective undergraduate programs in the country. With 140 full-time faculty, 1,387 undergraduate students, 1,448 graduate students and 21,000 living alumni, we are working to solve some of societys greatest challenges; to prepare students to become leaders and innovate throughout their careers; and to be a catalyst of economic development for the St. Louis region and beyond.
Here is the original post:
Missing Piece Discovered in the Puzzle of Optical Quantum Computing - SciTechDaily
- Introducing the Quantum Universal Operations Performance System: QUOPS - Quantinuum - September 15th, 2026 [September 15th, 2026]
- Quantum-proof blockchain: why math, not machines, holds the key - CoinDesk - September 15th, 2026 [September 15th, 2026]
- IBM, Lockheed Martin Announce Swiss Quantum Innovation Hub at ETH Zurich, Anchored by Switzerlands First IBM Quantum Computer - IBM Newsroom - September 15th, 2026 [September 15th, 2026]
- Fujitsu Shares Quantum Software Toolkit With Over 80 Partners - Quantum Zeitgeist - September 15th, 2026 [September 15th, 2026]
- Roundtable: Pathfinding New Industrial Division of Labor Map, Embracing the New Future How National Strength Transforms into Industrial Value | 36Kr... - September 15th, 2026 [September 15th, 2026]
- Quandela Publishes White Paper on Photonic QPU Integration With NVIDIA Infrastructure - The Quantum Insider - September 15th, 2026 [September 15th, 2026]
- Tennessee bets big on the future of quantum tech - Oak Ridger - September 15th, 2026 [September 15th, 2026]
- QCi and Hamad Bin Khalifa University Sign Three-Year Agreement on Quantum Technology - The Quantum Insider - September 15th, 2026 [September 15th, 2026]
- BlueQubit Launches "Quantum Flywheel" Grant Program to Advance Quantum Computing with AWS, IBM, and NVIDIA Accelerated Computing - Yahoo... - September 15th, 2026 [September 15th, 2026]
- Nvidias new quantum layer cut Fermilabs design work from five months to three weeks - The Next Web - September 15th, 2026 [September 15th, 2026]
- Which Bitcoin Wallets Are at Risk From Quantum Computers? 6.9 Million BTC Have Exposed Keys - 24/7 Wall St. - September 13th, 2026 [September 13th, 2026]
- AI Just Cut the Cost of Cracking Bitcoins Encryption in Half. Is Q-Day Getting Closer? - 24/7 Wall St. - September 13th, 2026 [September 13th, 2026]
- Which Bitcoin Wallets Are at Risk From Quantum Computers? 6.9 Million BTC Have Exposed Keys - Yahoo Tech - September 13th, 2026 [September 13th, 2026]
- Switzerlands first IBM quantum computer is expected by end-2026 - Stock Titan - September 13th, 2026 [September 13th, 2026]
- Xanadu and AMD Launch Backline Platform for Quantum-Classical Integration - HPCwire - September 13th, 2026 [September 13th, 2026]
- Chalmers Researchers Make Bosonic Quantum Operations More Than 1,000 Times Faster - thequantuminsider.com - September 13th, 2026 [September 13th, 2026]
- Quantum Computer Recreates Particle Collisions That Turn Energy Into Matter - bioengineer.org - September 13th, 2026 [September 13th, 2026]
- A Quantum Physicist Told His Team 'I Think AGI Is Here.' Here's What Convinced Him - Forbes - September 11th, 2026 [September 11th, 2026]
- What Does It Take for a Quantum Computer to Actually Be Quantum? - Quantinuum - September 11th, 2026 [September 11th, 2026]
- These 3 Quantum Stocks Are on the Rise as the US Government Takes Minority Stakes - Yahoo Finance - September 11th, 2026 [September 11th, 2026]
- Switzerland Is Getting Its First Dedicated IBM Quantum Computer - Tomorrow's World Today - September 11th, 2026 [September 11th, 2026]
- Beat the odds: Master and execute Monte Carlo Integration for finance on real quantum computers - Q-CTRL - September 11th, 2026 [September 11th, 2026]
- Why organizations need to act on quantum-safe cybersecurity - The World Economic Forum - September 11th, 2026 [September 11th, 2026]
- Could a Diamond Become the Heart of a Quantum Computer? - Fujitsu Global - September 11th, 2026 [September 11th, 2026]
- IBM, Lockheed Martin team up to bring Switzerland its first 120-qubit quantum computer - Interesting Engineering - September 11th, 2026 [September 11th, 2026]
- For banks, quantum computing is both a threat to security and a chance to build resilience - The World Economic Forum - September 11th, 2026 [September 11th, 2026]
- IBM, Lockheed Martin Announce Swiss Quantum Innovation Hub at ETH Zurich, Anchored by Switzerland's First IBM Quantum Computer - PR Newswire - September 11th, 2026 [September 11th, 2026]
- Fujitsu And Yaqumo Begin Testing on Neutral-Atom Quantum Computer Hardware - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- Quantum Computing Researchers Cut Estimated Cost of Attacking Bitcoin and Ethereum Encryption in Half - northeasttimes.com - September 11th, 2026 [September 11th, 2026]
- Cleveland Clinic, RIKEN and IBM Team Advance to Finals for 2026 ACM Gordon Bell Prize - IBM Newsroom - September 11th, 2026 [September 11th, 2026]
- Researchers Cut the Estimated Quantum Cost of a Key Step in Attacking Bitcoin and Ethereum by More Than Half - unchainedcrypto.com - September 11th, 2026 [September 11th, 2026]
- BWT Alpine and SEALSQ Explore Quantum-Classical Simulation for Formula One - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- 3 Quantum Stocks to Buy If You Already Have IonQ - Yahoo Finance - September 11th, 2026 [September 11th, 2026]
- China is poised to lead in research on quantum technologies. Democracies must act - The Strategist | ASPI's analysis and commentary site - September 11th, 2026 [September 11th, 2026]
- The commercialization of quantum computers is three years away. Although it is still in the stage of.. - - September 11th, 2026 [September 11th, 2026]
- Not IonQ, Not Rigetti Computing. This Quantum Computing Stock Could Be September's Biggest Winner. - The Globe and Mail - September 11th, 2026 [September 11th, 2026]
- Semiconductor and Quantum Developments Highlighted at Industry Conferences - IndexBox - September 11th, 2026 [September 11th, 2026]
- Quobly and Absolut System Partner on Cryogenic Infrastructure for Spin-Qubit Quantum Computers - The Quantum Insider - September 11th, 2026 [September 11th, 2026]
- Washington Bought Into Quantum Computing Crypto Should Be Paying Attention - blockhead.co - September 11th, 2026 [September 11th, 2026]
- When Seconds Replace Minutes: Quantum AI and the Fragility of Deterrence - Australian Institute of International Affairs - September 11th, 2026 [September 11th, 2026]
- Quantum computing will cause mayhem. Its an opportunity for investors - The Telegraph - September 11th, 2026 [September 11th, 2026]
- NEC has quietly quit quantum computing hardware development, report claims company says it will continue to evaluate practical applications and... - September 8th, 2026 [September 8th, 2026]
- U.S. Gets Minority Stakes in Some Quantum Computing Companies in $300 Million CHIPS Act Funding Deal - wsj.com - September 8th, 2026 [September 8th, 2026]
- Why quantum computing stocks are soaring today while the rest of the market falls - fastcompany.com - September 8th, 2026 [September 8th, 2026]
- 3 Top Quantum Computing Stocks to Buy in September - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- We Just Published the First Full-Stack Blueprint for Breaking 256-Bit Elliptic-Curve Signatures Heres What That Means - IonQ - September 8th, 2026 [September 8th, 2026]
- Ethereum Foundation Gives Itself Until 2029 to Guard Against Quantum Attacks - Northeast Times - September 8th, 2026 [September 8th, 2026]
- PsiQuantum Finalizes $100 Million Award with the U.S. Department of Commerce - The Quantum Insider - September 8th, 2026 [September 8th, 2026]
- Quantum Computing Stocks: IonQ Hosts Investor Day With SkyWater Deal In Focus - Investor's Business Daily - September 8th, 2026 [September 8th, 2026]
- Fujitsu Prototypes Diamond Quantum Computer Expandable via Optical Interconnects, Targeting 1,000 Logical Qubits by FY2035 - finance.biggo.com - September 8th, 2026 [September 8th, 2026]
- D-Wave Quantum Secures Up To $100 Million In CHIPS And Science Act Funding - pulse2.com - September 8th, 2026 [September 8th, 2026]
- Quantinuum Finalizes $100 Million CHIPS R&D Award with U.S. Department of Commerce to Advance Trapped-Ion Quantum Computer Manufacturing in the US -... - September 8th, 2026 [September 8th, 2026]
- Rigetti Signs Definitive Agreement for $100M with U.S. Government for Quantum Computing R&D - The Quantum Insider - September 8th, 2026 [September 8th, 2026]
- Biggest stock movers Tuesday: ZIM, NVS, quantum computing stocks, and more - Seeking Alpha - September 8th, 2026 [September 8th, 2026]
- The U.S. government agreed to award $100 million for quantum computing research with Rigetti - Stock Titan - September 8th, 2026 [September 8th, 2026]
- $100 million US push brings 300mm chips into the race for trapped-ion quantum hardware - Interesting Engineering - September 8th, 2026 [September 8th, 2026]
- Why Rigetti Computing Popped Today - The Motley Fool - September 8th, 2026 [September 8th, 2026]
- Is the Quantum Computing Threat to Bitcoin Overblown? These New Developments Suggest That's the Case. - The Globe and Mail - September 8th, 2026 [September 8th, 2026]
- Why D-Wave Quantum Stock Popped Today - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- IonQ and Congruity360 Partner to Enhance Quantum-Safe Protection - Business Wire - September 8th, 2026 [September 8th, 2026]
- Why Rigetti Computing Popped Today - Yahoo Finance - September 8th, 2026 [September 8th, 2026]
- The U.S.-China Quantum Race: How the State and Private Sector Are Being Mobilized for Quantum - The National Bureau of Asian Research (NBR) - September 4th, 2026 [September 4th, 2026]
- Quobly and TNO Partner on Silicon Spin Qubit Development - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- Nuclear reactor simulations advance with quantum particle transport breakthrough - Interesting Engineering - September 4th, 2026 [September 4th, 2026]
- Scientek and Classiq Partner to Accelerate Quantum Software Adoption in Taiwan - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- IBMs Nighthawk r2 Quantum Processor Targets a 25-Fold Increase in Circuit Speed - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- From MIT to IBM, expediting AI and quantum deployment - MIT News - September 4th, 2026 [September 4th, 2026]
- The Drawing on the Blackboard - The Times of Israel - September 4th, 2026 [September 4th, 2026]
- Quantum Explodes on the International Stage - afcea.org - September 4th, 2026 [September 4th, 2026]
- IonQ quantum computer Tempo goes online at KISTI in April 2027, Han River supercomputer 6 to launch this year - DongA Science - September 4th, 2026 [September 4th, 2026]
- Novo Nordisk's Foundation Is Building a Quantum Chip Factory in Copenhagen - Startup Fortune - September 4th, 2026 [September 4th, 2026]
- China Reaches 98% Efficiency With a Single Quantum Router on Origin Wukong - mediasat.info - September 4th, 2026 [September 4th, 2026]
- QC Ware and IonQ Demonstrate Hybrid Quantum Chemistry Workflow for Drug Discovery - The Quantum Insider - September 4th, 2026 [September 4th, 2026]
- Quantinuum to explore energy-industry uses for quantum tech with Saudi oil giant - BizWest - September 4th, 2026 [September 4th, 2026]
- IBM Stock Is Under Pressure. Is Its Quantum Business Reason Enough to Buy? - Barron's - September 4th, 2026 [September 4th, 2026]
- Old soup factory takes on new high-tech life as quantum computing firm gets $195M federal boost - CBC - August 29th, 2026 [August 29th, 2026]
- Quantum Computings Insiders Have Sold Nearly $863 Million More Than Theyve Bought. Should Investors Worry? - Yahoo Finance - August 29th, 2026 [August 29th, 2026]
- This Quantum Stock Is Surging 40% in Its Trading Debut. Meet Pasqal. - Barron's - August 29th, 2026 [August 29th, 2026]
- IBM Completes Acquisition of HRL Laboratories to Accelerate the Future of Quantum - IBM Newsroom - August 29th, 2026 [August 29th, 2026]
- Guest Post: Quantum Readiness Starts With the Infrastructure Were Building Today - The Quantum Insider - August 29th, 2026 [August 29th, 2026]