Research Statement

My research focuses on groundbreaking investigations into radioactivity and the discovery of new radioactive elements. Through meticulous experimental techniques and innovative methodologies, I aim to advance our understanding of radioactive phenomena and their applications in both physics and chemistry.

This interdisciplinary approach has led to significant discoveries, including the isolation of polonium and radium, contributing to the foundation of modern nuclear physics and radiochemistry.

Research Areas

Cryptanalysis

Cryptanalysis of symmetric-key primitives through unified attack frameworks and creative techniques, including differential, linear, differential-linear, boomerang, integral, impossible-differential, and zero-correlation attacks.

Automated Cryptanalysis

Interested in the automation of cryptanalysis, with emphasis on designing tools and algorithms for systematic security evaluation of ciphers, such as SAT/SMT-based approaches and dedicated frameworks.

Logic and Constraint Programming

Applying formal logic and constraint programming to applied problems, including satisfiability, automated reasoning, and combinatorial optimization.

Side-Channel Analysis

Exploring physical attack vectors against cryptographic implementations, such as fault injection, power analysis, and electromagnetic analysis techniques.

Applied Mathematics

Exploring connections between mathematics, logic, and computer science, and applying advances from one area to solve challenges in another, particularly in cryptography and security.

Information Security

General interest in securing information systems, with focus on principles and practices such as threat modeling, risk management, and security evaluation.

Current Projects

Radioactivity Studies

Investigation of radioactive properties in uranium minerals and isolation of new radioactive elements.

Measurement Techniques

Development of precise methods for measuring radioactive emissions and their properties.

Research Impact

My research has opened new frontiers in radioactivity studies, leading to practical applications in both scientific research and medical treatments. The discoveries have revolutionized our understanding of atomic structure and radioactive decay processes.