Area of research
Condensed Matter Physics · Materials Chemistry
Research interest
Research interests include Physics, Bent molecular geometry, Optics, Crystal (programming language), Beam (structure), and Electron.
From simulation to fabrication: Realizing silicon crystalline undulators with silicon nitride stressor layer patterning
Strong enhancement of electromagnetic shower development in oriented scintillating crystals and implications for particle detectors
Crystal fabrication techniques for enhanced performance in planar channeling
FCC-ee positron source from conventional to crystal-based
Sub-keV Electron Recoil Calibration for Macroscopic Cryogenic Calorimeters Using a Novel X-ray Fluorescence Source
Corrigendum to “Investigation of radiation emitted by sub GeV electrons in oriented scintillator crystals” [Nucl. Instrum. Methods Phys. Res. A 1060 (2024) 169022]
A novel tool for advanced analysis of Geant4 simulations of charged particles interactions in oriented crystals
Commissioning of the NUCLEUS Experiment at the Technical University of Munich
Crystal assisted steering of muons and antimuons at the muon collider
Coherent radiation in axially oriented industrial-grade tungsten crystals: A viable path for an innovative <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si1.svg" display="inline" id="d1e210"><mml:mi>γ</mml:mi></mml:math>-rays and positron sources
R&D on a high-performance electromagnetic calorimeter based on oriented crystalline scintillators
Glass chemical bonding for grazing-incidence x-ray telescopes based on monolithic ribbed structures
Apparatus for the measurement of birefringence maps of optical materials: the case of crystalline silicon for Einstein Telescope
Observation of Fine Structure in Channeling of Particles in Bent Crystals
Development of crystal optics for X-ray multi-projection imaging for synchrotron and XFEL sources
A plastic scintillation muon veto for sub-Kelvin temperatures
High-precision alignment techniques for realizing an ultracompact electromagnetic calorimeters using oriented high-Z scintillator crystals
Particle identification capability of a homogeneous calorimeter composed of oriented crystals
The Data Analysis of BULLKID: A Monolithic Array of Particle Absorbers Sensed by KIDs
Development towards high-resolution kHz-speed rotation-free volumetric imaging
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
Exploring coherent elastic neutrino-nucleus scattering of reactor neutrinos with the NUCLEUS experiment
Megahertz X-ray multi-projection imaging
Radiation in oriented crystals: Innovative application to future positron sources
Investigation of radiation emitted by sub GeV electrons in oriented scintillator crystals
Feasibility of using crystal channeling for the beam loss mitigation in slow extraction at 8GeV
Development towards high-resolution kHz-speed rotation-free volumetric imaging
Anodic bonding to manufacture LAUE lenses for high-energy astrophysics
Crystal-based pair production for a lepton collider positron source