Scientific research

Scientific research

Dept. of Theoretical Physics

- Direction of solid physics:
We investigate the multi-particle effect on the physical properties of nanostructures at any given temperature, spin polarization such as ground state energy, thermodynamic quantities, correlation characteristics, reproducibility. standardize band gap, effective mass, feedback function, collective stimuli, mobility, Spin resistance and Coulomb drag….

- Direction of high energy physics:
We focus on the Higgs birth process at LHC, CERN. Along with phenomenal computation at high energy, we are developing a new method and toolkit (XLOOPS-GiNaC) that allows automatic calculation of one-round modifications to scattering processes in the machine. particle acceleration at LHC.

- Cosmology Direction (Cosmology):
We study the accelerated expansion phenomenon of the universe and look for the cause of this phenomenon by space-time approaches. We are currently focusing on modified gravity (an extension of Einstein's standard theory of gravity) in the context of extra-dimension (space-time has a dimension greater than 4) by working with some models. brane-world like DGP (model of the group Dvali-Gabadadze-Porrati).

- Biological Physics (Bio-Physics):
The research focus is on the study of the physical properties of bio-polymers such as proteins and enzymes. To this end, all-atom potentials based simulation methods are used to examine the functional dynamics of the enzymes of interest. The method is being used on a variety of issues, including finding drugs to treat Alzheimer's and the AIDS virus.

 

Dept. of Nuclear Physics 

Department of Nuclear Physics is currently training in 2 basic directions:

1. Physics of nuclear reactors.

2. Application kernel.

Specifically, the research areas in the subject include:

(1) Study of canceling Position in checking defects of materials.

(2) Simulate the interaction of gamma, beta, and alpha radiation with matter.

(3) Neutron activation analysis.

(4) Analysis of X-ray fluorescence

(5) Equipment and Nuclear Detector.

(6) Application of particle physics in industry-agriculture-medicine.

 

Dept. of Solid Physics

The Department of Solid Physics is currently training in three basic directions:

Thin film materials - Application

Bulk materials - Applications

Simulation

Specifically, the research directions are as follows:

• Film materials

1. Fabrication of dielectric, inorganic, organic semiconductor films ... by many methods: PVD, PE-CVD, Sol-gel ... and research specific properties such as structure, morphology, electricity and optical by methods such as PL, FT-IR, UV-Vis, Ellipsometer, X-Ray, ELV ...

2. Fabrication of inorganic and organic solar cells based on Si: H (PIN or NIP structure) and MEH-PPV conductive polymer.

3. Inorganic luminescent Diodes based on Si: H and organic thin film (OLED) based on conductive polymers PEDOT, MEH-PPV, PFO, Ir (PPY), Alq3, PVK.

4. Research on nanostructured semiconductor materials that are capable of increasing the efficiency of photovoltaic components such as nano TiO2, CdS, CdSe ..., nanowire ZnO, AZO, NZO ... and TCO electrodes for manufacturing high-performance photovoltaic components.

• Block materials

1. Making crystal (ADP, KDP, Xenet ..) by dynamic cooling method

2. Fabrication and research of luminescent materials (LiF, CaSO4: Dy, Al2O3: C ...); Dosage and dating application using Luminescent Heat.

•    Computer application

1. Simulation of amorphous materials

2. Physics calculations

3. Control of peripheral devices.

 

Dept. of Applied Physics

Lecturers and students of Applied Physics are currently studying the theory and empirical problems related to the following fields:

- Optical - Spectral:
Laser physics, nonlinear optics, semiconductor optoelectronics, photonic. Spectroscopic research directions: Atomic spectroscopy, molecular spectroscopy, Raman and Laser spectroscopy.

- Plasma physics:
Plasma discharge gas, study the luminescence of plasma discharge gas and applications, vacuum techniques.

- Thin film physics and nanotechnology
Research and manufacture thin films and nanomaterials such as TCO transmission films, optoelectronic thin films, solid thin films, solar cells, waveguide materials ...

- Simulation:
Simulation of optical models, plasma physics and new materials.

 

Dept. of Physics and Electronic Engineering

The training program is designed with 03 main directions:

IC design and embedded system:
Provides knowledge of programming on programmable logic devices (chips) using programming languages ​​such as Verilog HDL, VHDL, Assembly language, C, C ++, Java. . . to design the processor (Processor), integrated circuit (IC-Integrated Circuit), memory (Memory),. . .

Students will practice on the test kit such as: AVR Kit microcontroller, DE1 Kit (Altera) ... ..

Microelectronics:
We focus on semiconductor components (LED, UVLED, solar cells) and models of micro-mechatronic systems or micro-sensors. Students have access to advanced nanotechnology for microelectronics research and manufacturing.

Automatic system:
The program will help students understand PLC programming skills and automated system design in industrial manufacturing processes. Omron PLC systems are used during internships, combined with specialized sensors to help students build simple automated systems. Thereby helping students improve the ability to program PLC as well as design automated systems. Besides, the robot field is also a hot topic in our teaching and research.

 

Dept. of Physics and Computer Science

Computational Physics is a hybrid of Physics and Computer Science, part of the Department of Physics. Curriculum of Computational Physics is designed to help students not only understand the basics of Physics but also master the skills of Computer Science. From there, students will be fully equipped to meet the requirements of society in the relevant fields.

Computer Physics majors have two main directions:

- Calculated physics:
Using computers to solve, model and simulate problems in physics, including writing programs for a number of virtual physics experiments.

- Smart measurement and remote measurement:
Use computers or computer-based systems with communication sensors to control one or more devices, transmit data, collect data, process data, and display.

 

Dept. of Geophysics

- Solid earth: theoretical research and application of geophysical methods in surveying geological structure, environment ...

- Astrophysics: study the motion theory of cosmic celestial bodies.

 

Dept. of Oceanology, Meteorology and Hydrology

Current main research directions:

- Hydrodynamics of mangroves, coastal areas, rivers, estuaries and seas;

- The process of dynamics of erosion and sedimentation in mangrove, river and estuarine areas;

- Motivation - ecology of mangrove and wetland systems;

- Predictive model for the spread of pollutants in air and water, waste pollution, oil spread;

- Hydrology in coastal areas banks, rivers, estuaries, transport sediments and erosion of river banks, saline intrusion.

- Design method of dams to prevent erosion by environmentally friendly technology.

- Physical physics, dynamic meteorological forces, atmospheric ocean interactions, air pollution.

- Biology and ecology of estuaries and coastal zones.

- Forecast of rain and storms, impacts of weather and climate on agricultural and economic activities of Vietnam.