The Positive and the Negative Impacts of Quantum Computers on the Finance Sector (2024)

Blog > PQC (Post-Quantum Cryptography) > The Positive and the Negative Impacts of Quantum Computers on the Finance Sector

Quantum computers will change the way many industries operate, and the impacts of quantum computing will affect all aspects of society. It’s not a question of if but when as governments and private companies race towards their development while contributing tens of billions of dollars towards their reality. Quantum computers could be used to solve complex problems faster and more accurately than traditional computers, leading to new discoveries and breakthroughs in various sectors (read our predictions about quantum’s impact by sector here). However, quantum computers could break many of the encryption algorithms currently used to secure digital trust. Thus, we’re exploring how quantum computing will impact the security of various interactions that businesses and individuals rely on in everyday life in a series of blog posts.

Quantum finance, or the field of applying quantum mechanics to finance and economics, holds great potential to benefit the industry, leveraging quantum computers that can solve more complex problems than classical computers, increasing optimization and prediction, while reducing risk.

However, quantum computing is a double-edged sword for the financial industry as it also poses a potential threat to traditional cryptographic systems which banking institutions rely on for secure transactions. In response, quantum-resistant cryptography is being developed to secure financial transactions. Financial institutions need to prepare today to implement quantum-safe solutions as soon as possible to ensure that users can maintain trust in the mass amount of transactions and data that the finance industry manages.Increasing digital trust increases brand trust

Positive: the potential of quantum finance

On one hand, quantum computers could revolutionize the financial industry, and could even be used to forecast future financial crashes. According to a Mckinsey study, finance stands to gain the most applications from quantum computing, and will likely be one of the first sectors to benefit from it. Banks and financial institutions already rely on complex calculations to understand and predict markets, but quantum computers can solve even more complex problems, in less time, than traditional computers.

Within the financial sector, quantum computers will enable calculations about the stock market that have previously been too numerous and random to analyze. Furthermore, in the realm of loan and portfolio calculations, quantum computers promise heightened precision in credit assessments, paving the way for more informed lending decisions. Additionally, quantum computers could be used to detect fraud with increased accuracy, saving banks millions of dollars as current estimates show that financial intuitions loose between $10-40 billion a year due to fraud and poor data management.

According to IBM, quantum computers could benefit the financial industry through improved:

  • trade optimization
  • risk profiling
  • targeting and predictions
  • product recommendations
  • portfolio management
  • credit scoring
  • fraud detection
  • anti-money laundering
  • forecasting financial crises

However, quantum computers will still not be able to predict financial trends with 100% accuracy. But they will have many advantages over classical computers, improving portfolio, risk management, asset pricing and more.

A few financial institutions have started experimenting with quantum computing – Goldman Sachs partnered with AWS, HSBC and IBM to investigate the use of quantum for pricing derivatives and portfolio optimization. JPMorgan has been experimenting with applying quantum solutions to optimization and risk management. Furthermore, leading banks are strategizing on how to protect against future quantum attacks.

However, currently most banks and financial institutions have not implemented quantum finance as quantum computers are not readily available yet. Quantum computers are primarily available in research labs and are not yet widespread in the financial industry. However, as quantum technology advances, quantum finance is expected to play a more significant role in revolutionizing financial modeling, analysis and decision-making processes.

Negative: the security risks are high

On the other hand, quantum computers could easily break the encryption algorithms that banks use today to protect financial data. Thus, every bank relying on traditional public key encryption algorithms could become a victim of a data breach as soon as a cryptographically relevant quantum computer is available. Banks are already a major target for attackers who are attracted by the loads of data that banks have. In fact, financial services firms are 300 timesmore likely to be targeted by a cyber-attack than other companies and saw a 63% increase in attacks in 2022.

Luckily, the National Institute of Standards and Technology (NIST) already has draft standards underway for new quantum-safe encryption algorithms, with final standards expected early next year.

But financial institutions should not delay protecting against quantum attacks, as they could already be subject to attacks from quantum computers in a “harvest now, decrypt later” attack. In this strategy, bad actors compromise systems today to collect encrypted data, with the intention of decrypting it later once quantum computers are available. Thus, the time for financial institutions to start transitioning to quantum-safe encryption is now. The White Househas urged companies to get started on the transition and guidance is already in place from NIST and the NSA, so there’s no reason to hold off the migration.

The transition will hinge on two steps: inventorying all cryptographic assets and achieving crypto-agility through automation and centralized management to be able to update cryptography quickly.

DigiCert’s customers investing in crypto-agility have deployed  DigiCert® Trust Lifecycle Manager, which provides a comprehensive solution to discover, manage and automate digital trust across their organization. Trust Lifecycle Manager is redefining the meaning of certificate management by integrating CA-agnostic certificate management across public and private trust to deliver centralized visibility and control, prevent business disruption and secure identity and access. 

In summary, it is imperative for financial organizations to proactively strengthen their defenses. This is not merely a matter of compliance but a critical step to safeguard trust. The time to start preparing for the post-quantum era is at hand. Organizations can take proactive steps by cataloging their cryptographic assets, prioritizing those requiring long-term trust and security, and exploring the integration of post-quantum cryptography (PQC) algorithms to fortify themselves against prospective quantum threats. For additional guidance on preparing for the transition to quantum cryptography, please refer to this blog.

Learn more about what financial instructions can do to increase a culture of security and digital trust at https://www.digicert.com/campaigns/banking-security-and-digital-trust.

The Positive and the Negative Impacts of Quantum Computers on the Finance Sector (2024)

FAQs

The Positive and the Negative Impacts of Quantum Computers on the Finance Sector? ›

Quantum technology

Quantum technology
Quantum engineering is the development of technology that capitalizes on the laws of quantum mechanics. Quantum engineering uses quantum mechanics as a toolbox for the development of quantum technologies, such as quantum sensors or quantum computers. Colloidal quantum dots irradiated with a UV light.
https://en.wikipedia.org › wiki › Quantum_engineering
is seen as having the potential to revolutionize many aspects of technology, the economy and society, including the financial sector. At the same time, this technology represents a significant threat to cybersecurity, especially due to its potential to render most current encryption schemes obsolete.

How will quantum computing affect finance? ›

The “quantum leap,” as offered by quantum computing with its unparalleled computational power and ability to handle complex algorithms, promises to revolutionize financial services, enabling exponentially faster processing, more accurate predictions and enhanced security.

What are the pros and cons of quantum computing? ›

What are the pros and cons of quantum computing?
ProsCons
Improves medical research since quantum computers can exactly simulate molecules and genes as well as process big dataCalculations cover a wide range of results and in certain circ*mstances could be less precise than binary computers
4 more rows
Aug 31, 2023

What are the benefits of quantum financial system? ›

Transparency and Trust: The decentralized nature of the QFS ensures that all transactions are transparent, auditable, and recorded on an immutable ledger. Efficiency: Quantum computing significantly speeds up transaction processing times, reducing costs and increasing the efficiency of financial operations.

What are the advantages and disadvantages of quantum technology? ›

Unlike classical bits, quantum bits or qubits can exist in multiple states simultaneously, enabling parallel computation. This enable Quantum Computers to solve complex problems exponentially faster, from simulating molecular interactions for drug discovery to optimising logistics.

How good quantum computing benefit the financial services industry? ›

Trading Optimization

In the complex landscape of financial markets trading, quantum computing's combinatorial optimization capabilities could enable investment managers to improve portfolio diversification, respond more precisely to market conditions, and streamline trading settlement processes more cost-effectively.

What are the disadvantages of quantum computing in business? ›

Cons of Quantum Computing:
  • Technical Challenges: Building and maintaining a quantum computer is an intricate task. ...
  • Error Correction Difficulties: ...
  • Limited Use for Classical Problems: ...
  • Security Implications: ...
  • Cost and Accessibility:
Nov 21, 2023

What are the positive effects of quantum computing? ›

Quantum computers excel at complex problem solving. The unique properties of qubits let them solve certain classes of problems faster and more efficiently than traditional computers. Quantum technology is advantageous for materials science, pharmaceutical research, subatomic physics, and logistics.

What is the biggest problem with quantum computing? ›

Compared with standard computers, quantum computers are extremely susceptible to noise. The quantum state of qubits is extremely fragile and any disturbance, such as a slight vibration or a change in temperature, can uncontrollably affect the computer, causing information stored to be lost.

What does quantum mean in finance? ›

A short definition is the following: Quantum economics and finance is the application of probability based on projective geometry—also known as quantum probability—to modelling in economics and finance. It draws on related areas such as quantum cognition, quantum game theory, quantum computing, and quantum physics.

Which quantum feature will directly benefit the finance team? ›

According to IBM, quantum computers could benefit the financial industry through improved: trade optimization. risk profiling. targeting and predictions.

What makes quantum computing so good for investing? ›

Lower operating costs by quantum optimization

Better solutions could be identified faster to handle a broad range of optimization problems that are costly and challenging to solve using today's classical computers. This would be an opportunity to improve operations and boost profit margins.

What are the weaknesses of quantum computing? ›

Challenges of Quantum Computing. Despite remarkable advances, quantum computing still faces many technological hurdles that limit its applications, scalability, and reliability for the time being. Due to their fragility, qubit interconnection, decoherence, and external noise, quantum systems are prone to errors.

What are the risks of quantum technology? ›

Quantum computers will be able to break common encryption methods at an alarming speed. Encryption tools currently used to protect everything from banking and retail transactions to business data, documents and digital signatures can be rendered ineffective – fast.

What are the drawbacks of the quantum model? ›

DRAWBACKS OF THE QUANTUM MECHANICAL MODEL OF THE ATOM

The graphs are difficult to understand since they are wave functions rather than basic distance vs probability plots. Quantum mechanics is not to be comprehended and is not comprehended by humans.

How will quantum computing affect the economy? ›

The impact of quantum technologies will be far-reaching, with potential opportunities across multiple industries and advances in sectors such as healthcare, climate change, energy, communications and finance.

What is the quantum theory in finance? ›

Quantum theory is used to model secondary financial markets. Contrary to stochastic descriptions, the formalism emphasizes the importance of trading in determining the value of a security. All possible realizations of investors holding securities and cash is taken as the basis of the Hilbert space of market states.

Can quantum computers predict the stock market? ›

Quantum computers can perform complex simulations more effectively than traditional computers. They could be used to simulate the stock market under various scenarios, helping to predict how stocks might behave under different economic conditions.

What will happens to Bitcoin when quantum computing? ›

According to researchers at the University of Sussex, a quantum computer with 1.9 billion qubits of processing power would be needed to break into the Bitcoin network within 10 minutes. This would require hackers to deploy millions of quantum computers, a scenario that is highly unlikely for the foreseeable future.

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