Area of research
Condensed Matter Physics · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Bent molecular geometry, Physics, Optics, Electron, and Nanotechnology.
Germanium target sensed by phonon-mediated kinetic inductance detectors
Crystal fabrication techniques for enhanced performance in planar channeling
FCC-ee positron source from conventional to crystal-based
A novel tool for advanced analysis of Geant4 simulations of charged particles interactions in oriented crystals
Crystal assisted steering of muons and antimuons at the muon collider
R&D on a high-performance electromagnetic calorimeter based on oriented crystalline scintillators
Observation of Fine Structure in Channeling of Particles in Bent Crystals
Performance of short and long bent crystals for the TWOCRYST experiment at the Large Hadron Collider
Exploring the Correlation Between Gaseous Emissions and Phenological Phases in Tomato Crops Through Machine Learning
SO2 Detection over a Wide Range of Concentrations: An Exploration on MOX-Based Gas Sensors
Low-energy spectrum of the BULLKID detector array operated on surface
Development and Deployment of Portable Sensor Platforms Based on a Micro-Electro-Mechanical-System Chemoresistive Gas Sensor Array for Outdoor Air Quality Monitoring
A Novel Indium Oxide-Based Nanostructured Material Designed for CO2 Detection
Enhancing Ozone Monitoring with Low-Cost Sensors and Deep Neural Network: A Novel Approach
From Gas Sensors to Artificial Neural Networks: A New Precision Farming Approach for Crop Coefficient Determination
The Data Analysis of BULLKID: A Monolithic Array of Particle Absorbers Sensed by KIDs
A New Frontier in CO<sub>2</sub> Sensing: A Comparative Study of Thermal and Light Activation in Na:In<sub>2</sub>O<sub>3</sub> Nanostructured Materials
Functionalization of Indium Oxide for Empowered Detection of CO<sub>2</sub> over an Extra-Wide Range of Concentrations
New Approach for the Detection of Sub-ppm Limonene: An Investigation through Chemoresistive Metal-Oxide Semiconductors
Insights into the Sensing Mechanism of a Metal-Oxide Solid Solution via Operando Diffuse Reflectance Infrared Fourier Transform Spectroscopy
Strong enhancement of electromagnetic shower development induced by high-energy photons in a thick oriented tungsten crystal
A highly-compact and ultra-fast homogeneous electromagnetic calorimeter based on oriented lead tungstate crystals
Temperature Induced Monoclinic to Orthorhombic Phase Transition in Protonated ZSM-5 Zeolites with Different Si/Al Ratios: An In-Situ Synchrotron X-ray Powder Diffraction Study
Radiation in oriented crystals: Innovative application to future positron sources
Investigation of radiation emitted by sub GeV electrons in oriented scintillator crystals
Fabrication of a Highly NO2-Sensitive Gas Sensor Based on a Defective ZnO Nanofilm and Using Electron Beam Lithography
Feasibility of using crystal channeling for the beam loss mitigation in slow extraction at 8GeV
Reduced SnO <sub>2-x</sub> for Low Power NO <sub>2</sub> Gas Sensors: From First Principles Simulations to Sensing Performance
Topical issue “Dynamics of systems on the nanoscale (2021)”
Nano Hotplate Fabrication for Metal Oxide-Based Gas Sensors by Combining Electron Beam and Focused Ion Beam Lithography