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Dive into the research topics where Van Cao Long is active.

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Featured researches published by Van Cao Long.


Physica Scripta | 2014

Kicked nonlinear quantum scissors and entanglement generation

A Kowalewska-Kudłaszyk; W. Leoński; Thi Dung Nguyen; Van Cao Long

We consider a nonlinear coupler with two Kerr-like oscillators mutually coupled by continuous linear interaction and excited by a series of ultrashort external pulses. We show that the system behaves like nonlinear quantum scissors. It evolves in such a way that it can be treated as a qubit–qubit system. We derive analytic formulas for the probabilities of the states involved in the systems evolution and show that they differ from those already discussed in the literature and corresponding to the continuously excited models. Moreover, for the model discussed here, maximally entangled Bell states can be generated with high efficiency.


16th Conference on Optical Fibers and Their Applications | 2015

Temperature sensitivity of photonic crystal fibers infiltrated with ethanol solutions

Lanh Chu Van; Tomasz Stefaniuk; Rafal Kasztelanic; Van Cao Long; Mariusz Klimczak; Hieu Le Van; Marek Trippenbach; Ryszard Buczynski

In this paper we present a numerical study on the optimization of dispersion of a photonic crystal fiber infiltrated with water-ethanol mixtures. The advantage of such an approach stems from the fact that the dependence of the refractive index on temperature is larger in liquids than in solid materials. Here, we examine photonic crystal fibers with a regular, hexagonal lattice and with various geometrical and material parameters, such as different number of rings of holes, various lattice constants and the size of core and air-holes. Additionally, for the optimized structure with flat dispersion characteristics, we analyze the influence of temperature and concentration of the ethanol solution on the dispersion characteristic and the zero dispersion wavelength shift of the fundamental mode.


Communications in Physics | 2018

Influence of Temperature And Concentration of Ethanol on Properties of Borosilicate Glass Photonic Crystal Fiber Infiltrated by Water – Ethanol Mixture

Hieu Le Van; Hue Thi Nguyen; Quang Ho Dinh; Van Cao Long

In this paper, we present a numerical simulation of the properties of a photonic crystal fiber (PCF) made of borosilicate glass infiltrated by the water-ethanol mixture. We examine the influence of temperature and ethanol concentration for the refractive index, dispersion properties, effective mode area and confinement loss of the fundamental mode by a Lumerical simulation method. We also calculate the fundamental mode of the fiber infiltrated with a water-ethanol mixture with the concentration range of ethanol from 0% to 100% in the temperature range from 10 ̊ C to boiling point of ethanol. The results show that all fibers infiltrated with water-ethanol mixture have flat dispersion characteristics in the infrared range above 1.32. The best flatness exists for pure ethanol. Furthermore, it is possible to shift the zero-dispersion wavelength and modify fundamental properties of PCFs by both temperature and concentration of ethanol. The results obtained are important because of that we not only use their reasonable parameters for the design and manufacture but also use them in nonlinear phenomena and nonlinear applications of fibers as supercontinuum generation.


Applied Optics | 2017

Dispersion characteristics of a suspended-core optical fiber infiltrated with water

Khoa Dinh Xuan; Lanh Chu Van; Van Cao Long; Quang Ho Dinh; Luu Van Xuan; Marek Trippenbach; Ryszard Buczynski

In this paper we present a study on the dispersion characteristics in the suspended-core optical fibers made of borosilicate of NC21A glass infiltrated with water. Replacement of air with water results in dramatic improvement of the dispersion characteristics in the fibers, valuable in the process of supercontinuum generation. A near-zero flat dispersion can be achieved in the anomalous or normal dispersion range for various diameters of the core.


16th Conference on Optical Fibers and Their Applications | 2015

Dispersion engineering in soft glass photonic crystal fibers infiltrated with liquids

Tomasz Stefaniuk; Hieu Le Van; Jacek Pniewski; Van Cao Long; Aleksandr Ramaniuk; Karol Grajewski; Lanh Chu Van; Miroslaw A. Karpierz; Marek Trippenbach; Ryszard Buczynski

We present a numerical study of the dispersion characteristic modification in a nonlinear photonic crystal fibre (PCF) infiltrated with organic solvents. The PCF is made of PBG08 glass and was developed in the stack-and-draw process. The PBG08 glass has a high refractive index (n < 2.0), high nonlinear refractive index (n2 = 4.3×10−19 m2/W) and good rheological properties that allow for thermal processing of the glass without crystallization. In the numerical study 18 different solvents were used. The dispersion, mode area, and losses characteristics were calculated. The zero dispersion wavelength (ZDW) of the fibre can be shifted towards longer wavelengths by approx. 150 nm by using Nitrobenzene as infiltrating liquid and by a smaller value using other liquids. At the same time the mode area of the fundamental mode increases by approx. 5 to 15% depending on the wavelength considered. The confinement losses increase significantly for six analysed liquids by a few orders of magnitude up to 102 dB/m. Our approach allows to combine high nonlinearities of the soft glass with the possibility to tune zero dispersion wavelength to the desired value.


computational methods in science and technology | 2008

Propagation Technique for Ultrashort Pulses II: Numerical Methods to Solve the Pulse Propagation Equation

Van Cao Long; H. N. Viet; Marek Trippenbach; Khoa Dinh Xuan


Applied Optics | 2016

Dispersion engineering in nonlinear soft glass photonic crystal fibers infiltrated with liquids.

Jacek Pniewski; Tomasz Stefaniuk; Hieu Le Van; Van Cao Long; Lanh Chu Van; Rafal Kasztelanic; Grzegorz Stepniewski; Aleksandr Ramaniuk; Marek Trippenbach; Ryszard Buczynski


European Physical Journal D | 2014

Electromagnetically induced transparency for a double Fano-profile system

Thuan Bui Dinh; Van Cao Long; W. Leoński; Jan Peřina


Optical and Quantum Electronics | 2012

An exact soluble equation for the steady state probability distribution in a nonlinear system: application to the noise reduction in Raman Ring Laser

Van Cao Long; Khoa Doan Quoc


Journal of Optics | 2017

Supercontinuum generation in photonic crystal fibres with core filled with toluene

Lanh Chu Van; Alicja Anuszkiewicz; Aliaksandr Ramaniuk; Rafal Kasztelanic; Khoa Dinh Xuan; Van Cao Long; Marek Trippenbach; Ryszard Buczynski

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Hieu Le Van

University of Zielona Góra

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Lanh Chu Van

University of Zielona Góra

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