Area of research
Nuclear and High Energy Physics · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Quantum and electron transport phenomena, Particle physics theoretical and experimental studies, High-Energy Particle Collisions Research, and Semiconductor Quantum Structures and Devices.
Revisiting Emission-line Measurement Methods for Narrow-line Active Galactic Nuclei
Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. XIII. Ultraviolet Time Lag of Hβ Emission in Mrk 142
Supermassive Black Holes with High Accretion Rates in Active Galactic Nuclei. XIII. Ultraviolet Time Lag of H$β$ Emission in Mrk 142
Monitoring AGNs with Hβ Asymmetry. III. Long-term Reverberation Mapping Results of 15 Palomar–Green Quasars
Nitrogen fertilization modulates beneficial rhizosphere interactions through signaling effect of nitric oxide
Tunable Hybrid Qubit in a GaAs Double Quantum Dot
Responses of soil nitrogen fixation to Spartina alterniflora invasion and nitrogen addition in a Chinese salt marsh
Coupling Two Distant Double Quantum Dots with a Microwave Resonator
Conditional rotation of two strongly coupled semiconductor charge qubits
Spatial distribution of bacterial communities driven by multiple environmental factors in a beach wetland of the largest freshwater lake in China
Electron spin resonance and spin–valley physics in a silicon double quantum dot
Ultrafast universal quantum control of a quantum-dot charge qubit using Landau–Zener–Stückelberg interference
SCC-CIVIC-FA Track A: Resilient Arctic Innovations for Sustainable Communities in Extreme Environments (RAISE)
Collaborative Research: NSF R2I2: Alaska Innovation Incubator for Resilient and Smart Infrastructure in Extreme and Changing Environments
CIVIC-PG Track A: Resilient Arctic Coastal Communities to Coastal Hazards
Conference: Convergence Approaches to Arctic Coasts
Conference: 2023 STEM Summer Camp for Indigenous Middle School Students in Utqiagvik, Alaska
SitS: Collaborative Research: Understand and forecast long-term variations of in-situ geophysical and geomechanical characteristics of degrading permafrost in the Arctic
CAREER: Geometric Function Theory in Several Complex Variables
NNA Track 1: Collaborative Research: Resilience and adaptation to the effects of permafrost degradation induced coastal erosion
Collaborative Research: AccelNet: Permafrost Coastal Systems Network (PerCS-Net) -- a circumpolar alliance for arctic coastal community information exchange
Convergence NNA: Coordinate a Transdisciplinary Research Network to Identify Challenges of and Solutions to Permafrost Coastal Erosion and Its Socioecological Impacts in the Arctic
Holomorphic and CR mappings in Several Complex Variables
Mobilization of Sand Particles and Erosion Progression Under Various Permeating Fluids
Mobilization of Sand Particles and Erosion Progression Under Various Permeating Fluids