Cracking the uncertainty around quantum computing – Information Age
Aravind Ajad Yarra and Saji Thoppil, fellows at Wipro Limited, answer frequently asked questions about quantum computing
What should be kept in mind when implementing quantum technology?
Todays leaders are inundated with the disruptive power of quantum computing and its potential applications in AI, machine learning and data science. Gartner data reveals that by 2023, 95% of organisations researching it will utilise quantum-computing-as-a-service (QCaaS) to minimize risk and contain costs. Also, 20% of organisations will be seen budgeting for quantum computing projects, compared to less than 1% today.
We, Aravind Ajad Yarra, fellow, Wipro Limited and Saji Thoppil, fellow and chief technologist cloud and infrastructure Services, Wipro Limited, bring you the basics of quantum computing and demystify some of its unknown facets in todays evolving scenario.
Lets look at the commonly asked questions:
A: Most of us would have read quantum mechanics at high-school level physics and probably been baffled by its strange characteristics. Quantum mechanics is the physics that applies at atomic and subatomic levels. Thought of using the physics of quantum mechanics to computing is what has led to quantum computing.
Our present-day computing is largely based on Boolean logic, represented using binary bits, which assume the value of either 0 or 1. Quantum computing, on the other hand, uses quantum bits (qubits), which behave differently from classic bits and use quantum superposition state where each qubit can assume both 0 and 1 at the same time.
To get better clarity, I suggest reading this short article on quantum computing.
A: Quantum computing is one of the most exciting developments in recent computing history. For years, Moores law has been helping us to keep the innovation cycle in computing going and push the boundaries of what computing can offer to business, so much so that software is what is driving digital businesses. With Moores law reaching its saturation point, everyone is eagerly looking for whats next in computing. This is seen as something that can keep the computing innovation cycle going, hence this buzz.
If you hear the general hype, you might believe quantum computing might replace classic computing soon. However, that is far from reality. The superposition property that we mentioned earlier gives quantum computing some unique capability that traditional computing doesnt have. Simply put, qubit superposition allows quantum computing to solve certain classes of problems promptly, which might otherwise take years for classical computers.
IBM has established a roadmap for reaching quantum advantage and concluded that: for significant improvement over classical systems, the power of quantum computers must double every year. Read here
A: Quantum computers are not bigger or faster versions of existing computers. Quantum computing is fundamentally different from existing computing. The problems for which quantum computers are most useful are problems that classical computers are not good at.
Some of the classes of problems that quantum computers currently look at are optimisation problems, for example, addressing the classic travelling salesman problem. As the number of cities that have this problem increases, classic computers find it exponentially hard to find an optimum solution. Quantum computers proved very useful for these classes of problems. Solving such problems make quantum computers super useful in areas like gene analysis, drug discovery, chemical synthesis, weather simulations, newer types of encryption, unstructured search, and better deep neural networks, to name a few.
What is AI? Information Age has created a simple guide to AI, machine learning, neural networks, deep learning and random forests. Read here
A: There are two major approaches to quantum computing that are currently in use: circuit-based computers (aka universal quantum computers), and adiabatic computers.
Universal quantum computers are based on logical gates and work similar to the underlying logic foundations of classical computers. Hence, universal quantum computers are extremely useful for computing problems improving on our current knowledge base of solutions. However, qubits required for universal quantum computers are extremely difficult to realise physically because qubit instability makes it hard to produce universal quantum computers.
Adiabatic computers are analog, but are easier to produce. These are more relaxed with respect to qubit state stability. Hence, it is easier to produce 1000s of qubits on adiabatic computers. However, adiabatic computers can be used for limited use cases such as optimisation problems.
A: While most platform companies that are working to build quantum computers are taking bets on one or the other, enterprises can probably explore both of the models. While adiabatic computing is limited, there are production-ready adiabatic computers using real quantum bits (such as those from DWave), as well as digital annealers, which use digital qubits (from Atos and Fujitsu).
Its emerging technologies month on Information Age, that means augmented and virtual reality, quantum computing and blockchain. Read here
Circuit-based quantum computers are much more general purpose. While these have more utility for enterprises, no production-grade problems can be currently solved with the current state of these machines. I would suggest exploring both classes of computers, based on the case that one is trying to solve.
A: The best way to start with identification of use cases for quantum computing is to explore areas where classic computers are currently not good at. Optimisation problems are the best starting point for most enterprises. Based on the industry, different kinds of optimisation use cases can be considered for exploring quantum computers. These could be risk modelling, inventory or asset optimisation, among others.
Cryptography is another area where robust use cases can be identified by enterprises. Quantum computers, when production-ready, can potentially break current methods of encryption, leading to exposure of sensitive data. Identifying data that is very sensitive and has longer term value, and considering safe encryption methods using quantum key generation and distribution are other ways in which it can be used.
Machine learning is also a very promising use case. Quantum machine learning, as it is called, can use special purpose quantum circuits that can significantly boost the efficiency of machine learning algorithms.
A: Industries that are process-centric, such as pharmaceuticals and oil & gas exploration, are the early adopters. These industries can benefit from quantum computing in complex optimisation problems they need solve from time to time.
Apart from these asset-heavy industries, the manufacturing industry is also actively exploring quantum computing. Banks and other financial services companies, which have risk modelling needs, also rely a lot on quantum computing.
A: It is probably too early to talk about real-world scenarios where quantum computers have made an impact. While there are demonstrations by research labs to use quantum communication methods to send instant data transfer from satellite and breaking various encryption methods, these still look good in labs.
The reason for this is the current state of reliability in quantum computers. Qubits are highly sensitive, and they are prone to errors. Error correction methods that we currently use reduce the effective working qubits, but early results have been seen with digital annealers, which simulate adiabatic quantum computing using traditional digital computers.
Wipros Topcoder, for example, is currently working with Fujitsu to run crowdsourced challenging using Fujitsus digital annealer to solve real-world problems. Additionally, Airbus has been running open innovation challenges to solve some of its problems using quantum computing.
Quantum technologies also has appeal in the areas of communication, cryptography, sensors and measurements. Unlike quantum computing, where practical use cases are still in exploratory stages, these areas have industry-ready products that enterprises can put to use.
Quantum communication takes advantage of the nature of photons in flight and is able to detect if a photon has reached the recipient uninterrupted; this can ensure secure communications.
While quantum key generation (QKG) is used to generate truly random keys, quantum key distribution (QKD) is used for securely distributing keys. Both of these are essential for using a one-time pad cryptography technique, which is considered the holy grail in encryption.
Generating true random numbers for the quantum computing era, or indeed the pre-quantum era, is the aim. Crypta Labs reckon they have cracked it. Read here
Additionally, quantum sensors have niche applications where there is a need for highly accurate measurements of gravity, electric fields, time, position and magnetic field. In a fiercely competitive world, we can expect more enterprises wanting to leverage these to create unique offerings.
Given the nature of its evolution, it is hard to make an upfront business case for quantum computing. However, given the potential, I suggest that the business case be made in two parts.
The first part is to focus on near-term (1-2 years) use cases such as optimisation and encryption by using digital annealers for optimisation and photon-based ASICS for key generation. Digital annealers, or even simulators running on cloud, can solve several practical optimisation problems.
On the other hand, centres of excellence can be set up, leading to building expertise and solving relevant problems. Returns from these investments would set the stage for the second part, focusing on mid & longer term (2+ years) use cases, such as exploring machine learning and unstructured data search as part of centres of innovation and open innovation communities with small investments, but with longer period on returns.
Written by Aravind Ajad Yarra, fellow at Wipro Limited, and Saji Thoppil, fellow and chief technologist cloud and infrastructure Services at Wipro Limited
See the rest here:
Cracking the uncertainty around quantum computing - Information Age
- Long-lived ytterbium states could sharpen quantum computing and atomic clocks - Phys.org - July 26th, 2026 [July 26th, 2026]
- A Pitt-led team plans to automate quantum computing research with a Department of Energy grant - University of Pittsburgh - July 26th, 2026 [July 26th, 2026]
- Quantum Computing Stocks Are Falling. Should You Buy IonQ or D-Wave, or Just Stick With Nvidia? - Yahoo Finance - July 26th, 2026 [July 26th, 2026]
- IBM to Acquire HRL Laboratories to Expand Quantum Computing Research - The Quantum Insider - July 26th, 2026 [July 26th, 2026]
- Quantum Computing Stocks Are Falling. Should You Buy IonQ or D-Wave, or Just Stick With Nvidia? - AOL.com - July 26th, 2026 [July 26th, 2026]
- [Webinar] Quantum Law: AI, Quantum Computing, and the Future of Legal Judgment - August 6th, 1:00 pm - 2:00 pm ET - JD Supra - July 26th, 2026 [July 26th, 2026]
- Quantum Computing Stocks IonQ, Rigetti, and D-Wave Are Sending Shockwaves Through Wall Street With This $988 Million Warning - The Motley Fool - July 26th, 2026 [July 26th, 2026]
- Best Quantum Computing Stocks To Keep An Eye On - July 25th - MarketBeat - July 26th, 2026 [July 26th, 2026]
- Got $1,000? This Under-the-Radar Quantum Computing Pioneer Could Be a Brilliant Buy - The Motley Fool - July 26th, 2026 [July 26th, 2026]
- Strategy, BlackRock form Bitcoin Security Consortium to prepare for quantum computing threat - The Block - July 26th, 2026 [July 26th, 2026]
- Quantum Computing Is Down 71% From Its High. Heres What Investors Are Actually Betting On - TIKR.com - July 26th, 2026 [July 26th, 2026]
- Illinois offering $1.8M in tax credits to attract quantum computing companies - MyStateline - July 26th, 2026 [July 26th, 2026]
- Galaxy Commits $5 Million to Prepare Bitcoin for Quantum Computing Threat - The Quantum Insider - July 21st, 2026 [July 21st, 2026]
- 1 Quantum Computing Stock That Could Be the Next Palantir - Yahoo Finance - July 21st, 2026 [July 21st, 2026]
- Singapore Defence Agencies Partner With IBM to Explore Quantum Computing Applications - The Quantum Insider - July 21st, 2026 [July 21st, 2026]
- How Quantum Computing Earns Its Place in the Data Center - EE Times - July 21st, 2026 [July 21st, 2026]
- Cutting through the quantum computing noise - Metal Tech News - July 21st, 2026 [July 21st, 2026]
- How to Secure Model Context Protocol (MCP) Deployments Against Quantum Computing Threats - Security Boulevard - July 21st, 2026 [July 21st, 2026]
- Bloch Quantum Tech Hub Secures $55M in Federal and Matching Grants to Build U.S. Quantum Supply Chain - Quantum Computing Report - July 21st, 2026 [July 21st, 2026]
- Bitpanda Mythbusters: Will quantum computing destroy the blockchain? - Bitpanda - July 21st, 2026 [July 21st, 2026]
- BTQ Technologies and TIDAL PWR Partner to Develop Trusted Quantum Data Center Reference Architectures - Quantum Computing Report - July 21st, 2026 [July 21st, 2026]
- 1 Quantum Computing Stock That Could Be the Next Palantir - The Motley Fool - July 21st, 2026 [July 21st, 2026]
- Israel Innovation Authority Launches NIS 100M ($33M USD) Call to Build National Quantum R&D Infrastructure - Quantum Computing Report - July 21st, 2026 [July 21st, 2026]
- Watch Why Quantum Computing May Depend on the Moon - Bloomberg.com - July 21st, 2026 [July 21st, 2026]
- DIS and DSTA Collaborate with IBM to Explore Quantum Computing for Mission Planning, Logistics Optimisation - mindef.gov.sg - July 21st, 2026 [July 21st, 2026]
- Israel earmarks NIS 100 million for national quantum computing R&D infrastructure - The Times of Israel - July 21st, 2026 [July 21st, 2026]
- Forum Live: Exploring Quantum Inward & Reaching for Space Outward - A Dialogue at the Starting Point of the New Computing Power Civilization -... - July 20th, 2026 [July 20th, 2026]
- Topological Materials Market Growth Forecast to 2035: Quantum Computing and Spintronics Drive Expansion - News and Statistics - IndexBox - July 20th, 2026 [July 20th, 2026]
- UConn, Yale-led collaboration wins federal grant for quantum computing. Its worth tens of millions. - Hartford Courant - July 20th, 2026 [July 20th, 2026]
- High Q Technologies Partners with Creative Biostructure to Scale Quantum-Enabled EPR Protein Mapping - Quantum Computing Report - July 20th, 2026 [July 20th, 2026]
- Quantum Computing (QUBT) Following NHanced Deal And ESOP Filing, Is The Bull Case Too Cheap? - simplywall.st - July 20th, 2026 [July 20th, 2026]
- Quantum computing stocks outlook: IonQ, Rigetti, and D-Wave after a brutal selloff - Investing.com - July 18th, 2026 [July 18th, 2026]
- Intels Former CEO Gelsinger Admits Firm Scoffed at NVIDIAs GPUs While Riding High on CPU Dominance & Makes Big Quantum Computing Claims - Wccftech - July 18th, 2026 [July 18th, 2026]
- When will quantum computing have its breakout moment? - Latitude Media - July 18th, 2026 [July 18th, 2026]
- Classiq and ParityQC Partner to Streamline Hardware-Aware Circuit Optimization - Quantum Computing Report - July 18th, 2026 [July 18th, 2026]
- AT&T Business and Palo Alto Networks Partner to Deliver Quantum-Resilient SASE Fabric - Quantum Computing Report - July 18th, 2026 [July 18th, 2026]
- Logical Qubit Technology Unveils AGate Quantum Cloud Platform and Multi-Year Roadmap - Quantum Computing Report - July 18th, 2026 [July 18th, 2026]
- IonQ Stock And 2 Quantum Computing Picks For Investors to Watch - simplywall.st - July 18th, 2026 [July 18th, 2026]
- Jane Goodall Institute USA and FormationQ Launch Quantum Computing Research Program to Explore Ecological Roots of War And Peace - The Quantum Insider - July 18th, 2026 [July 18th, 2026]
- IBM stock jumps on quantum computing breakthrough with U.S. scientists - Yahoo Finance - July 7th, 2026 [July 7th, 2026]
- D-Wave Quantum (QBTS) to Receive $1.5M Grant Through NSF Project to Strengthen US Quantum Computing Leadership - Yahoo! Finance Canada - July 7th, 2026 [July 7th, 2026]
- 3 Quantum Computing Stocks to Buy in July - 24/7 Wall St. - July 7th, 2026 [July 7th, 2026]
- What is quantum computing, and why does Trump care? - Mashable - July 7th, 2026 [July 7th, 2026]
- 3 Quantum Computing Stocks to Watch in the Second Half of 2026 - The Motley Fool - July 7th, 2026 [July 7th, 2026]
- 3 Quantum Computing Stocks to Watch in the Second Half of 2026 - Yahoo Finance - July 7th, 2026 [July 7th, 2026]
- Alfred University and Classiq Launch Quantum Computing Initiative - The Quantum Insider - July 7th, 2026 [July 7th, 2026]
- Pasqal and MegazoneCloud Partner to Bring Quantum Computing to South Korea - The Quantum Insider - July 7th, 2026 [July 7th, 2026]
- 3 Quantum Computing Stocks to Buy in July - Yahoo Finance - July 7th, 2026 [July 7th, 2026]
- Quantum computing is about to get a lot more real - Fast Company - July 7th, 2026 [July 7th, 2026]
- University of Sydney and IBM Identify Major Source of Quantum Computing Errors - The Quantum Insider - July 7th, 2026 [July 7th, 2026]
- How to Start a Career in Quantum Computing in 2026 - The Quantum Insider - July 7th, 2026 [July 7th, 2026]
- IOSG: Countdown to Q-DayWill Quantum Computing Spell the End for Cryptocurrencies? - - July 7th, 2026 [July 7th, 2026]
- This Quantum Computing Stock Recently Went Public, and It Could Be the Buy of the Year - The Motley Fool - July 7th, 2026 [July 7th, 2026]
- IQM achieves milestone in quantum error correction, enabling fault-tolerant computing in the near-term - Business Wire - June 26th, 2026 [June 26th, 2026]
- IonQ vs. Quantinuum: Which Quantum Computing Accuracy-Leading Stock Looks Like the Better Buy? - The Motley Fool - June 26th, 2026 [June 26th, 2026]
- AI and quantum computing: How the powerful partnership shaping the future - WION - June 26th, 2026 [June 26th, 2026]
- IonQ vs. Quantinuum: Which Quantum Computing Accuracy-Leading Stock Looks Like the Better Buy? - Yahoo Finance - June 26th, 2026 [June 26th, 2026]
- Quantum Computing Threat Elevates Cryptography to Board-Level Risk Oversight - WSJ - June 26th, 2026 [June 26th, 2026]
- Microsoft Stock After the Quantum Computing Controversy: What Investors Should Know - WEEX - June 26th, 2026 [June 26th, 2026]
- Quantum Computing (QUBT) Completes NHanced Deal To Expand Manufacturing For Quantum Tech - Yahoo Finance - June 24th, 2026 [June 24th, 2026]
- 3 Quantum Computing Stocks With More Upside Than SpaceX - The Motley Fool - June 24th, 2026 [June 24th, 2026]
- Quantum Computing (QUBT) Buys NHanced Semiconductors And Opens Fab 2 For Hardware Push - simplywall.st - June 24th, 2026 [June 24th, 2026]
- The Path to Utility-Scale Quantum Computing in HPC Starts with the Silicon Transistor - HPCwire - June 22nd, 2026 [June 22nd, 2026]
- IBM Nighthawk Processor Validated in Quantum Chromodynamics and Cybersecurity Benchmarks - Quantum Computing Report - June 22nd, 2026 [June 22nd, 2026]
- Digital twins, quantum computing and 40 years of HPC: What to watch at ISC High Performance 2026 - Scientific Computing World - June 22nd, 2026 [June 22nd, 2026]
- Rigetti Computing Stock (RGTI) Opinions on Quantum Computing Sector Growth - Quiver Quantitative - June 22nd, 2026 [June 22nd, 2026]
- Amazon (NASDAQ: AMZN) Sets Five-To-Seven Year Window For Commercially Viable Quantum Computing - foreignpolicyjournal.com - June 22nd, 2026 [June 22nd, 2026]
- Cleveland Clinic and IBM Forum Highlights Advancements in AI and Quantum Computing for Healthcare Research - Cleveland Clinic Newsroom - June 16th, 2026 [June 16th, 2026]
- Atom Computing and Phasecraft Partner on Material Science Algorithms - Quantum Computing Report - June 16th, 2026 [June 16th, 2026]
- HPE Advances Quantum Computing at Scale with Expanded Industry Collaborations - The Quantum Insider - June 16th, 2026 [June 16th, 2026]
- Why optical quantum computing could level up humanity to solving its greatest challenges - The World Economic Forum - June 16th, 2026 [June 16th, 2026]
- He Called Quantum Computing Before 1,800% Gains Here Are His Next Big Trades - InvestorPlace - June 16th, 2026 [June 16th, 2026]
- Atom Computing and Phasecraft Announce Strategic Collaboration to Accelerate Development of Next-Generation Materials - The Quantum Insider - June 16th, 2026 [June 16th, 2026]
- UK and Japan Ratify Frontier Technology Partnership to Align Quantum Computing Initiatives - Quantum Computing Report - June 16th, 2026 [June 16th, 2026]
- QuEra Outlines 2028 Roadmap for 256-Logical-Qubit Libra System and Expanded AWS Cloud Partnership - Quantum Computing Report - June 16th, 2026 [June 16th, 2026]
- Why is Quantum Computing stock surging today? - Investing.com - June 16th, 2026 [June 16th, 2026]
- HPE expands quantum computing partnerships with eight firms - Investing.com - June 16th, 2026 [June 16th, 2026]
- IQM CEO on the potential of quantum computing - CNBC - June 16th, 2026 [June 16th, 2026]
- Watch Why the US Is Investing in Quantum Computing - Bloomberg.com - June 16th, 2026 [June 16th, 2026]
- Quantum Computing: A Speculative Buy In An Emerging Technological Frontier (NASDAQ:QUBT) - Seeking Alpha - June 16th, 2026 [June 16th, 2026]