India's first free-space QKD link spans 5.56 km in Gandhinagar trial
Synopsis
Key Takeaways
India has successfully demonstrated its first free-space Quantum Key Distribution (QKD) link, establishing a secure quantum communication channel over 5.56 kilometres between the Bhaskaracharya National Institute for Space Applications and Geo-informatics (BISAG-N) and IIT Gandhinagar. The milestone field trial, conducted on the night of 27–28 September 2026, marks a significant advance in India's pursuit of quantum-resilient secure communications.
How the Trial Was Conducted
The demonstration was carried out by QNu Labs in collaboration with BISAG-N and IIT Gandhinagar. The team deployed QNu Labs' proprietary Pointing, Acquisition and Tracking (PAT) system to maintain a stable free-space optical link across the 5.56-km corridor. The trial achieved a Quantum Bit Error Rate (QBER) consistently below five per cent — a critical threshold for reliable quantum key generation — and produced secure keys at a rate of 230–260 bits per second.
Unlike fibre-based QKD systems, free-space QKD transmits quantum signals through open air via optical channels, making it applicable in scenarios where laying fibre infrastructure is impractical or impossible. This characteristic also opens a direct pathway to satellite-based quantum communication.
The Integrated Architecture
The demonstration brought together two complementary approaches to quantum security. QNu Labs' hardware-based Armos QKD device handled the free-space optical channel, while BISAG-N's Vedic Kavach platform — equipped with post-quantum cryptography and quantum random number generation — provided the software layer. The generated keys were integrated with Vedic Kavach, enabling successful end-to-end encryption and decryption of test messages.
Notably, the integrated architecture is designed to remain operational even when the physical quantum channel is temporarily disrupted — a resilience feature that sets it apart from single-layer quantum security approaches.
What the Stakeholders Said
Dr Vinay Thakur, Director General of BISAG-N, described the integration of Vedic Kavach with QNu Labs' QKD technology as 'a significant step towards practical quantum-resilient communication systems.' Sunil Gupta, Co-founder and CEO of QNu Labs, said the successful demonstration 'paved the way for longer-distance quantum-secure networks and satellite-based quantum communication.' Cmde Manish Tripathi (Retd), In-charge of ISTF at IIT Gandhinagar, said the trial 'showed how academia, indigenous technology and real-world experimentation could be integrated to address emerging secure communication requirements.'
Why This Matters for India
The trial comes as nations race to build quantum-secure communications infrastructure ahead of the anticipated arrival of cryptographically relevant quantum computers — machines capable of breaking widely used encryption standards such as RSA. India's demonstration of a domestically developed, field-tested QKD system reinforces its sovereign quantum security ambitions and reduces dependence on foreign cryptographic technology.
BISAG-N, an autonomous scientific society under the Ministry of Electronics and Information Technology, specialises in space technology applications, satellite communication, and geo-informatics. QNu Labs, founded in 2016, focuses on quantum-secure digital infrastructure and positions itself as a developer of sovereign quantum security products. IIT Gandhinagar, established in 2008, contributes interdisciplinary research across engineering, science, and technology.
With this foundation in place, India's research community and industry partners are now positioned to extend free-space QKD to greater distances and, ultimately, to space-based relay nodes.