International Conference on

Quantum Computing and Information Theory (ICQCIT-26)

Conference Date

13th Nov - 14th Nov 2026

Conference Venue

Boston, USA

Conference Mode

Hybrid Conference
Proudly organized by:- Science Leagues

"Join global experts in Quantum Computing and Information Theory"

Registration Options

View all registration categories and choose the best fit.

Conference Session Tracks

SDG Wheel

Aligned with

UN Sustainable Development Goals

This conference contributes to global sustainability by aligning its research discussions and academic sessions with key United Nations Sustainable Development Goals. It fosters knowledge exchange, innovation, and collaborative engagement.

SDG 4
SDG 4 Quality Education
SDG 8
SDG 8 Decent Work and Economic Growth
SDG 9
SDG 9 Industry, Innovation and Infrastructure
SDG 11
SDG 11 Sustainable Cities and Communities
SDG 12
SDG 12 Responsible Consumption and Production
SDG 16
SDG 16 Peace, Justice and Strong Institutions
Track 01

Quantum Algorithms for Machine Learning

This track focuses on the development and application of quantum algorithms specifically designed for machine learning tasks. Researchers are invited to explore how quantum computing can enhance predictive modeling and feature extraction in various domains.

Track 02

Information Theory in Quantum Systems

This session aims to delve into the principles of information theory as applied to quantum systems. Contributions that investigate the implications of quantum entanglement and cryptography on information processing are particularly encouraged.

Track 03

Deep Learning Techniques in Quantum Computing

This track highlights the intersection of deep learning methodologies and quantum computing technologies. Papers that propose novel deep learning architectures or optimization techniques leveraging quantum resources are welcome.

Track 04

Anomaly Detection in Industrial IoT

This session addresses the challenges and solutions related to anomaly detection in industrial IoT environments. Contributions that utilize quantum computing for real-time monitoring and predictive maintenance are highly sought after.

Track 05

Workflow Automation and Quantum Technologies

This track explores the integration of quantum computing into workflow automation processes. Researchers are invited to discuss how quantum algorithms can optimize resource allocation and improve system efficiency.

Track 06

Simulation Analytics in Quantum Computing

This session focuses on the use of simulation analytics to model quantum systems and their applications. Papers that demonstrate innovative simulation techniques and their implications for quantum information theory are encouraged.

Track 07

Feature Extraction Techniques in Quantum Frameworks

This track investigates advanced feature extraction techniques within quantum computing frameworks. Contributions that highlight the advantages of quantum approaches over classical methods in various applications are welcome.

Track 08

Optimization Techniques for Quantum Resource Allocation

This session examines optimization techniques specifically tailored for resource allocation in quantum computing environments. Papers that propose new algorithms or frameworks for efficient resource management are encouraged.

Track 09

Digital Twin Technologies and Quantum Computing

This track explores the synergy between digital twin technologies and quantum computing. Researchers are invited to present studies that demonstrate how quantum methodologies can enhance the capabilities of digital twins in various industries.

Track 10

Supervised and Unsupervised Learning in Quantum Contexts

This session focuses on the application of both supervised and unsupervised learning techniques in quantum computing scenarios. Contributions that investigate the effectiveness of these learning paradigms in quantum-enhanced applications are particularly welcome.

Track 11

Quantum Cryptography and Secure Information Systems

This track delves into the advancements in quantum cryptography and its implications for secure information systems. Researchers are encouraged to present innovative approaches that leverage quantum principles to enhance data security.