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Quantum science and technology

Start here explains the quantum concepts, the qubit, superposition, entanglement and decoherence. The theme then follows the national mission and its hubs, quantum computers, quantum communication and cryptography, and quantum sensing. Prelims has asked about qubits and about the targets and hubs of the National Quantum Mission.

UPSC has asked

  • Prelims 2025: the Majorana 1 chip and quantum computing

Showing 1 of 4 subjects, those that changed from 1 to 15 July 2026.Show all

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What this theme is examined on, whatever the news.

Quantum concepts: qubit, superposition, entanglement, decoherence

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Prelims and MainsAdded 20 September

A classical bit is 0 or 1; a qubit, a quantum bit, is a system such as an electron's spin or a superconducting circuit that can be in a superposition, a combination of 0 and 1 at once, until it is measured, when it gives one answer. Two qubits can be entangled, so that measuring one fixes the other however far apart they are, which Einstein called spooky and experiment has confirmed. A quantum computer uses both to work on many possibilities together, which for factoring, searching and simulating molecules promises speed no classical machine can match. The obstacle is decoherence: any disturbance from the environment collapses the superposition, so qubits must be isolated, often near absolute zero, and errors corrected by using many physical qubits for one reliable one. Quantum communication uses the same fragility as a strength: an eavesdropper on a quantum key disturbs it and is detected.

Two answers to the quantum threat to encryption

Quantum key distributionPost quantum cryptography
What it isa physical way to share a secret key using photonsnew mathematical algorithms run on ordinary computers
What protects itthe laws of physics: measuring the key disturbs ithardness of problems no known quantum algorithm solves
Needsdedicated fibre or line of sight, or a satellite; special hardwarea software update
Rangetens to a few hundred km per link; satellites for moreunlimited
Ready todaydemonstrations and pilot networksstandards published 2024, deployment under way
IndiaNational Quantum Mission's 2,000 km network target, DRDO and ISRO demonstrationsadoption by banks and government systems is the next step
Quantum key distribution secures the key with physics, post quantum cryptography secures it with mathematics; most systems will use the second, the most sensitive links the first.Source: NIST post quantum standards, August 2024; National Quantum Mission
  • Hardware routes: superconducting circuits (IBM, Google), trapped ions, photons and semiconductor spins; each trades speed, error rate and ease of scaling. "Quantum advantage" is a task done faster than any classical computer, first claimed by Google in 2019.
  • Quantum key distribution sends a key as photons; the BB84 protocol detects interception because measuring a photon changes it. India has demonstrated QKD over 100 km of fibre (DRDO, 2022) and in free space (ISRO, 2021), and the National Quantum Mission targets satellite QKD and a 2,000 km fibre network.
  • Post quantum cryptography is the other defence: ordinary mathematics chosen because no known quantum algorithm breaks it; the United States standardised the first three algorithms in August 2024, and the threat it answers is "harvest now, decrypt later".
  • Quantum sensing uses the same sensitivity to disturbance to measure time, gravity and magnetic fields more finely than any classical sensor, for navigation without satellites and for medical imaging.
  • The National Quantum Mission, approved in April 2023 with Rs 6,003.65 crore to 2031, aims at intermediate scale computers of 50 to 1,000 qubits, QKD over 2,000 km, and four thematic hubs, for computing at IISc Bengaluru, communication at IIT Madras, sensing at IIT Bombay and materials at IIT Delhi.

Mains: Quantum technology is three different bets, computing, communication and sensing, on the same physics; India's mission funds all three, but the near term payoff is in communication and sensing, where the physics is proven and the engineering is the barrier.

UPSC has asked

  • Prelims 2022: the context in which the term qubit is used

See also: National Quantum Mission · Entanglement sudden death · C-DOT quantum security products · Prompt injection and ASCII smuggling

Quantum advantage claim from India

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Prelims and Mains

Quantum advantage is a result a quantum computer reaches faster than any known classical method, and the Quantum Advantage Tracker marks a claim superseded if a classical method later matches it; quantum computers are poor at arithmetic and good at simulating quantum systems, which is why such claims appear first in physics.

What changed

  1. 12 Jul 2026New subject

    • A team at BITS Pilani, with IBM, simulated the behaviour of quarks and gluons under the strong nuclear force on 120 qubits in 20 seconds, against about two hours classically.
    • It is the first active claim from an Indian laboratory on the Quantum Advantage Tracker, where a result is marked superseded if a classical method later matches it.
    • Quantum computers are poor at arithmetic and good at simulating quantum systems, which is why useful advantage is appearing first in physics.

    The Hindu, 12 Jul 2026: Indian lab designs quantum algorithm to beat computers (opens in a new tab) · PIB, 29 Jul 2026: PARLIAMENT QUESTION: DEVELOPMENT OF QUANTUM ALGORITHMS BY INDIAN RESEARCH INSTITUTIONS (opens in a new tab)