Eleonora Lorenza Zich | Quantum Computing | Research Excellence Award

Ms. Eleonora Lorenza Zich | Quantum Computing | Research Excellence Award

Politecnico di Milano | Italy 

Ms. Eleonora L. Zich is a researcher at the Politecnico di Milano, focusing on computational electromagnetics and advanced optimization methodologies. Her work integrates evolutionary algorithms, quantum-inspired computing, and numerical modeling to address complex electromagnetic design problems with enhanced efficiency and precision. Zich has authored 8 scientific publications, which have collectively received 8 citations, contributing to an h-index of 2, reflecting a developing yet increasingly recognized research trajectory. A notable example of her recent work is the 2025 article “Quantum Selection for Genetic Algorithms Applied to Electromagnetic Design Problems,” which demonstrates her commitment to innovating optimization frameworks for engineering applications. By incorporating quantum-based selection mechanisms into genetic algorithms, she advances computational strategies that can significantly improve the performance of electromagnetic design workflows. Zich collaborates with ten co-authors, indicating active participation in interdisciplinary research networks spanning electrical engineering, applied physics, and computational sciences. These collaborations enhance the breadth and applied relevance of her contributions, particularly in fields such as telecommunications, sensing technologies, and electronic component optimization. Through her focus on algorithmic innovation and computational efficiency, Zich’s work supports the development of advanced tools that have the potential to influence both academic research and industrial technological progress.

Citation Metrics (Scopus)

10

8

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2

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Citations
8

Documents
8

h-index
2
🟦 Citations        🟥 Documents          🟩 h-index

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Top 5 Featured Publications

Shao-Chun Li | Quantum Materials | Best Researcher Award

Prof. Shao-Chun Li | Quantum Materials | Best Researcher Award

Professor | Nanjing University | China

Prof. Shao Chun Li, affiliated with Nanjing University, is a prolific researcher whose work primarily focuses on condensed matter physics and materials science, particularly low-dimensional quantum materials. His research explores the fundamental electronic properties of transition metal dichalcogenides (TMDs) and topological materials such as WTe₂ and ZrTe₅. These materials are of significant interest due to their exotic quantum phenomena, including quantum spin Hall effect, topological insulating behavior, superconductivity, charge density waves, and pseudogap states. Notable among his contributions is the observation of a Coulomb gap in monolayer 1T’-WTe₂, which has implications for understanding electron-electron interactions in two-dimensional systems. He has also investigated potassium-intercalated Td-WTe₂ and revealed emergent superconducting properties, broadening the potential for novel quantum device applications. Furthermore, his work on 1T-TiSe₂ provided insights into charge density wave inhomogeneity and pseudogap phenomena, contributing to the broader understanding of correlated electron systems. Through detailed experimental techniques such as scanning tunneling microscopy (STM) and angle-resolved photoemission spectroscopy (ARPES), Prof. Li’s research elucidates the complex interplay of lattice, charge, and spin in quantum materials. With over 3,642 citations and an h-index of 30, his scholarly output, including 59 publications in high-impact journals like Nature Communications, Nano Letters, and Physical Review B, reflects his strong influence in the field. Prof. Li’s investigations not only deepen the fundamental understanding of quantum states of matter but also support the development of next-generation electronic and quantum technologies.

Profiles: Scopus | ORCID

Featured Publications

1. Song, Y.‑H., Jia, Z.‑Y., Zhang, D., Zhu, X.‑Y., Shi, Z.‑Q., Wang, H., Zhu, L., Yuan, Q.‑Q., Zhang, H., Xing, D.‑Y., & Li, S.‑C. (2018). Observation of Coulomb gap in the quantum spin Hall candidate single‑layer 1T′‑WTe₂. Nature Communications, 9(1). 
 Cited by: 74

2. Zhu, L., Li, Q.‑Y., Lv, Y.‑Y., Li, S.‑C., Zhu, X.‑Y., Jia, Z.‑Y., et al. (2018). Superconductivity in potassium‑intercalated Td‑WTe₂. Nano Letters, 18(10). 
Cited by: 63

3. Zhang, K.‑W., Yang, C.‑L., Lei, B., Lu, P., Li, X.‑B., Jia, Z.‑Y., Song, Y.‑H., Sun, J., Chen, X., Li, J.‑X., & Li, S.‑C. (2018). Unveiling the charge density wave inhomogeneity and pseudogap state in 1T‑TiSe₂. Science Bulletin, 63(7), 426‑432. 
Cited by: 20