Close Menu

    Stay Ahead with Exclusive Updates!

    Enter your email below and be the first to know what’s happening in the ever-evolving world of technology!

    What's Hot

    Every Country Has Promised Fusion Energy Is Coming. The UK Just Put £30 Million and a Hard 2040 Deadline Behind That Promise. Here Is Why This One Is Different

    July 21, 2026

    Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

    July 21, 2026

    China Just Demonstrated a Fiber Network Transmitting 51.3 Terabits Per Second Without a Single Signal Repeater. Here Is Why That Number Rewrites What Anyone Thought Was Possible for Global Internet Infrastructure

    July 21, 2026
    Facebook X (Twitter) Instagram
    Facebook X (Twitter)
    PhronewsPhronews
    • Home
    • Big Tech & Startups

      Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

      July 21, 2026

      xAI No Longer Exists as a Standalone Company. Elon Musk Just Absorbed His AI Operation Into SpaceX and the Rebrand to SpaceXAI Is the Clearest Signal Yet of Where He Thinks AI and Space Are Heading Together.

      July 21, 2026

      SambaNova Just Raised $1 Billion at an $11 Billion Valuation to Challenge Nvidia on AI Inference. The Bet Is That Speed at the Edge Matters More Than Raw Training Power and Enterprises Are Starting to Agree.

      July 20, 2026

      SK Hynix Just Raised $26.5 Billion on Nasdaq in One of the Largest U.S. Equity Offerings Any Asian Company Has Ever Completed. The Money Has One Destination and It Is Not Coming Back.

      July 20, 2026

      Meta’s Custom AI Chip Iris Is Going Into Production in September. The Company Spending $145 Billion on AI This Year Has Decided the Cost of Depending on Nvidia Is No Longer Worth It.

      July 19, 2026
    • Crypto

      Market Collapse: What Happened to NFTs?

      April 23, 2026

      Quantum Computing Advances Force Coinbase and Institutional Custodians to Rethink Crypto Security

      March 8, 2026

      AI Assisted Hacking Groups Target Crypto Firms With Multi-Layered Social Engineering

      February 18, 2026

      Global Crypto Regulations Expand as 2026 Begins With New Data Collection Frameworks and National Laws

      January 16, 2026

      Coinbase Bets on Stablecoin and On-Chain Growth as Key Market Drivers in 2026 Strategy

      January 10, 2026
    • Gadgets & Smart Tech
      Featured

      Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

      By fariehanJuly 21, 2026
      Recent

      Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

      July 21, 2026

      AI Has Spent Three Years Getting Smarter for People Who Can Already Afford It. Nokia Just Changed That and the Implications Go Further Than Anyone Is Crediting

      July 18, 2026

      Samsung Is About to Show Its Next Foldable Phones and the Market It Is Competing In Has Never Been More Crowded. Here Is What Galaxy Unpacked 2026 Needs to Deliver

      July 18, 2026
    • Cybersecurity & Online Safety

      A 15-Year-Old Linux Flaw Just Surfaced With a Near-Perfect Exploit. GhostLock Hands Any Local User Root Access and Can Break Out of Containers. Every Linux System Running Today Is Potentially Exposed.

      July 19, 2026

      Accenture Confirmed a Breach After a Hacker Listed 35GB of Its Source Code for Sale. The Company Whose Entire Business Is Securing Others Just Became the Most Embarrassing Cautionary Tale in Cybersecurity.

      July 18, 2026

      Researchers Just Documented the First AI-Powered Ransomware That Rewrites Itself Mid-Attack. JadePuffer Does Not Wait to Be Stopped. It Adapts Before You Can.

      July 18, 2026

      Hackers Stole 630GB of Apple and Tesla Manufacturing Secrets from Tata Electronics. The Breach Confirms Everything Supply Chain Security Experts Have Warned About for Years.

      July 9, 2026

      Apple Just Pushed an Unscheduled Security Update Because AI-Powered Attacks Are Moving Faster Than Its Normal Patch Cycle Can Handle

      July 6, 2026
    PhronewsPhronews
    Home»Science & Future Tech»Quantum Computing: Revolutionary Tech or Overhyped Fantasy?
    Science & Future Tech

    Quantum Computing: Revolutionary Tech or Overhyped Fantasy?

    oluchiBy oluchiMarch 10, 2025Updated:June 12, 2025No Comments
    Facebook Twitter Pinterest LinkedIn WhatsApp Reddit Tumblr Email
    Share
    Facebook Twitter LinkedIn Pinterest Email

    Quantum computing is a multidisciplinary field of computer science, mathematics, and physics that harnesses the unique qualities of quantum mechanics to solve problems beyond the ability of even the most powerful classical computers.

    The potential quantum computing holds is unparalleled. Unlike classical computers that operate on the binary system of 0s or 1s, quantum computers utilize quantum bits, or qubits.

    Qubits, based on principles of superposition and entanglement in quantum mechanics, can exist in multiple states simultaneously (superposition), and two or more qubits can be manipulated in a single operation (entanglement). Meaning a qubit can be a 0 or a 1, but can also exist as 0 and 1 at the same time.

    This allows them to perform calculations exponentially faster than their classical counterparts, particularly for certain complex problems. Following this principle, 2 qubits can process 4 pieces of information, 3 qubits can process 8 pieces of information, and so on.

    How does Quantum Computing work?

    Quantum computing functions on four basic principles, which include:

    • Superposition, a state where a qubit can exist in two different states or possibilities at the same time. 
    • Entanglement, which allows two or more qubits to interact and be manipulated to give results.
    • Decoherence, the state where qubits lose their ability for superpositioning and entanglement due to environmental disturbance. This can be triggered intentionally, as it allows quantum computers to provide measurements and interact with classical computers.
    • Interference, the ability of qubits to overlap and interact with each other, which aids the algorithm behind quantum computing.

    Qubits are made from trapped ions, photons, artificial or real atoms, or quasiparticles. Qubits, however, are very susceptible to interference from external factors like temperature, light, and sound, which can affect the results of the quantum computer.

    To effectively make use of qubits in quantum computing, the qubits are kept at a cryogenic temperature of the lowest absolute zero to help reduce thermal noise, preserve the quantum states of the qubits, and reduce the risks of decoherence.

    Qubits come in various forms, each suited for different types of tasks. In a non-exhaustive list of qubits that have been proposed/implemented, the commonly known ones include:

    • Superconducting qubits: this is a commonly used qubit in quantum computing. It is based on the Josephson junction, a device that allows the flow of supercurrent without resistance. It is made from superconducting materials that operate at low temperatures to store and process quantum information and is favored for its speed in performing computations and fine-tuned control. Examples include flux qubits and phase qubits.
    • Trapped ion qubits: makes use of charged atoms/ions that are confined and manipulated in free space by electromagnetic fields, causing their quantum states to serve as qubits. Calcium, magnesium, and beryllium ions are used for this purpose.
    • Quantum dot qubits: qubits are generated from the quantum states of electrons confined in semiconductor dots. They are manipulated using electrical gates and magnetic fields.
    • Topological qubits: quantum information is stored on the topological properties of a material rather than in individual particles. Qubits of this form are considered potentially more stable and less error-prone.
    • Diamond nitrogen vacancy (NV) center bit: makes use of the quantum state of an electron trapped in a diamond-like lattice to store and manipulate information. This qubit form is manipulated using microwaves and optical fields. It is effective in fields like quantum sensing and metrology.
    • Nuclear magnetic resonance (NMR) qubits: utilizes the quantum states of atom nuclei with molecules as qubits by manipulating the nuclei using radiofrequency pulses in a magnetic field. It is commonly used in quantum chemistry simulations.
    • Photonic qubits: leverages the quantum properties of light, using beam splitters, phase shifters, and detectors to represent and process quantum information.

    To input information into a quantum computer, the data is encoded into qubits using different encoding methods like basis encoding, amplitude encoding, or angle encoding (among others), all dependent on the information type and quantum algorithm being used, for example, Grover’s algorithm for amplitude amplification, quantum simulation algorithms, hybrid quantum/classical algorithms, and so on.

    The output from a quantum computer is in the form of classical bits of 0s and 1s, which is then processed and interpreted to obtain desired results.

    Uses of Quantum Computing 

    Below are key areas where quantum computing has had/is playing impactful roles:

    • Pharmaceuticals: Quantum computers can stimulate molecular behavior and biochemical reactions with unprecedented accuracy when developing a new drug, catalyst, or advanced materials. This speeds up the research rates and development of life-saving drugs and treatments.
    • Machine learning: Quantum algorithms can accelerate machine learning tasks, such as data analysis and pattern recognition, which can lead to more advanced AI systems.
    • Material science: Quantum computing can stimulate a quantum system to better understand properties of materials at atomic and molecular levels.
    • Finance models: Due to the speed, accuracy, and ability of quantum computers to carry out complex analysis, it allows the computer to be suitable for valuation of products and credit risk assessments.
    • Meteorology: uses quantum theory to make high-resolution and highly sensitive measurements of physical parameters of the weather to make accurate forecasts.
    • Other uses of a quantum computing system include cryptography, traffic optimization, quantum sensors, and solar capture.

    Quantum computing is a system that is already in play in some high-tech industries, national labs, and universities for research and application purposes. IBM (International Business Machines Corporation) uses and develops quantum computing for financial models, quantum-centric supercomputing, and developing quantum-resistant encryption technologies.

    Microsoft’s Azure Quantum Compute platform is used for scientific research, material science, and drug discovery. Rigetti Computing produces quantum processors for chemical stimulation, combinatorial optimization, and machine learning.

    JPMorgan Chase is currently working on building new quantum algorithms and applications for finance models, machine learning, and cryptography. Google employs the use of quantum computing for research, logistics, financial modeling, and supply chain optimization. Volkswagen AG optimizes quantum algorithms for traffic routing and financial modeling.

    Quantum computing is no longer an object of fantasy. It currently stands as a revolutionary technology in its infancy and is currently making strides in recent applications. The current strides and future predictions regarding this tech are too significant to ignore, and with further research and innovations, this technology will cross borders of the “hype” about it.

    decoherence entanglement IBM quantum interference Microsoft Azure Quantum quantum algorithms quantum applications quantum chemistry quantum computing quantum computing companies quantum computing research quantum cryptography quantum finance quantum hardware quantum machine learning quantum meteorology quantum sensors qubits superposition
    Share. Facebook Twitter Pinterest LinkedIn Tumblr Telegram Email
    oluchi
    • X (Twitter)
    • LinkedIn

    I am a content writer with over three years of experience. I specialize in creating clear, engaging, and value-driven content across diverse niches, and I’m now focused on the tech and business space. My strong research skills, paired with a natural storytelling ability, enable me to break down complex topics into compelling, reader-friendly articles. As an avid reader and music lover, I bring creativity, insight, and a sharp eye for detail to every piece I write.

    Related Posts

    Every Country Has Promised Fusion Energy Is Coming. The UK Just Put £30 Million and a Hard 2040 Deadline Behind That Promise. Here Is Why This One Is Different

    July 21, 2026

    Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

    July 21, 2026

    China Just Demonstrated a Fiber Network Transmitting 51.3 Terabits Per Second Without a Single Signal Repeater. Here Is Why That Number Rewrites What Anyone Thought Was Possible for Global Internet Infrastructure

    July 21, 2026

    Comments are closed.

    Top Posts

    Coinbase responds to hack: customer impact and official statement

    May 22, 2025

    Anthropic Will Use Claude User Chats For Data Training

    October 16, 2025

    Cursor AI Hits 1 Million Daily Users. Why Developers Are Switching to This Coding Tool

    March 23, 2026

    MIT Study Reveals ChatGPT Impairs Brain Activity & Thinking

    June 29, 2025
    Don't Miss
    Science & Future Tech

    Every Country Has Promised Fusion Energy Is Coming. The UK Just Put £30 Million and a Hard 2040 Deadline Behind That Promise. Here Is Why This One Is Different

    By fariehanJuly 21, 2026

    The UK’s fusion energy has entered a new phase after decades of ambitious promises and…

    Microsoft Is Building Quantum-Resistant Security Before Quantum Computers Can Break the Encryption Protecting Everything. Here Is How Far Along That Work Actually Is

    July 21, 2026

    China Just Demonstrated a Fiber Network Transmitting 51.3 Terabits Per Second Without a Single Signal Repeater. Here Is Why That Number Rewrites What Anyone Thought Was Possible for Global Internet Infrastructure

    July 21, 2026

    xAI No Longer Exists as a Standalone Company. Elon Musk Just Absorbed His AI Operation Into SpaceX and the Rebrand to SpaceXAI Is the Clearest Signal Yet of Where He Thinks AI and Space Are Heading Together.

    July 21, 2026
    Stay In Touch
    • Facebook
    • Twitter
    About Us
    About Us

    Evolving from Phronesis News, Phronews brings deep insight and smart analysis to the world of technology. Stay informed, stay ahead, and navigate tech with wisdom.
    We're accepting new partnerships right now.

    Email Us: info@phronews.com

    Facebook X (Twitter) Pinterest YouTube
    Our Picks
    Most Popular

    Coinbase responds to hack: customer impact and official statement

    May 22, 2025

    Anthropic Will Use Claude User Chats For Data Training

    October 16, 2025

    Cursor AI Hits 1 Million Daily Users. Why Developers Are Switching to This Coding Tool

    March 23, 2026
    © 2025. Phronews.
    • Home
    • About Us
    • Get In Touch
    • Privacy Policy
    • Terms and Conditions

    Type above and press Enter to search. Press Esc to cancel.