This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary structural optimization (BESO) method to design photonic crystals with broad all-angle negative refraction (AANR) frequency range. The photonic crystals are assumed to be two-dimensional periodical structures, which consist of dielectric materials and air. The conditions for the occurrence of AANR are identified and the design objective is to enlarge the AANR frequency range. The BESO algorithm is proposed based on finite element analysis for band diagrams of photonic crystals and the derived sensitivity numbers. Starting from a simple initial design without any AANR, BESO gradually re-distributes the dielectric materials within the periodical...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
This paper presents a method for topology optimization of both geometrically and materially nonlinea...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
Toward an efficient and easy-implement optimization for photonic band gap structures, this paper ext...
Toward an efficient and easy-implement optimization for photonic band gap structures, this paper ext...
All-angle negative refraction (AANR) of phononic crystals and its frequency range are dependent on m...
We present rigorous optimization and design of three-dimensional photonic-crystal (PhC) structures i...
The capabilities and operation of electromagnetic devices can be dramatically enhanced if artificial...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
The propagation of evanescent waves inside phononic band gaps is important for the design of phononi...
The project discusses the means of achieving negative refraction through the implementation of two a...
Abstract—The capabilities and operation of electromagnetic devices can be dramatically enhanced if a...
Abstract—The capabilities and operation of electromagnetic devices can be dramatically enhanced if a...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
This paper presents a method for topology optimization of both geometrically and materially nonlinea...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
This paper proposes a new topology optimization algorithm based on the bi-directional evolutionary s...
Toward an efficient and easy-implement optimization for photonic band gap structures, this paper ext...
Toward an efficient and easy-implement optimization for photonic band gap structures, this paper ext...
All-angle negative refraction (AANR) of phononic crystals and its frequency range are dependent on m...
We present rigorous optimization and design of three-dimensional photonic-crystal (PhC) structures i...
The capabilities and operation of electromagnetic devices can be dramatically enhanced if artificial...
Phononic band gap crystals are made of periodic inclusions embedded in a base material, which can fo...
The propagation of evanescent waves inside phononic band gaps is important for the design of phononi...
The project discusses the means of achieving negative refraction through the implementation of two a...
Abstract—The capabilities and operation of electromagnetic devices can be dramatically enhanced if a...
Abstract—The capabilities and operation of electromagnetic devices can be dramatically enhanced if a...
Phononic band gap crystals, which could prohibit the propagations of elastic waves in c...
This paper presents a method for topology optimization of both geometrically and materially nonlinea...
International audienceWe apply optimization algorithms inspired by evolution photonic structures. Tr...