A novel scheme for implementation of all-optical NOT logic gate based on photonic crystal ring resonator has been proposed. Photonic crystal is comprised of two-dimensional square lattice of dielectric rods in air substrate. Indium phosphide with a refractive index of 3.1 is adopted as the material of the rods. The finite different time domain (FDTD) and plane wave Expansion (PWE) methods are used to analyze the behavior of the structure. The simulation results show that the contrast ratio is 10.97dB for NOT gate. Moreover, the operational wavelength of the input ports is 1.55µm. Since the structure has a simple geometric shape with clear operating principle, it is potentially applicable for photonic integrated circuits.DOI:http://dx.doi.or...
In this paper we proposed a new design for all optical NAND gate. By combining nonlinear Kerr effect...
AbstractIn this paper we proposed a new design for all optical NAND gate. By combining nonlinear Ker...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
A novel scheme for implementation of all-optical NOT logic gate based on photonic crystal ring reson...
In this work, we used the concept of Photonic Crystals (PhCs) for the computational simulation of t...
The research carried out in the field of optics and photonics with an idea to design and develop the...
The research carried out in the field of optics and photonics with an idea to design and develop the...
In this paper we investigate and optimize the design of an OR gate all optical circuit based on sili...
In this paper we investigate and optimize the design of an OR gate all optical circuit based on sili...
All-optical logic gates, including OR, XOR, NOT, XNOR, and NAND gates, are realized theoretically in...
The work presented in this paper potrays the working of NOT logic gate which is implemented using th...
AbstractIn this paper we proposed a new design for all optical NAND gate. By combining nonlinear Ker...
A compact and simple structure is designed to create an all-optical XOR logic gate using a two-dimen...
Optical logics will play a crucial role in the next generation all optical data processing networks....
In this paper, the design of all-optical logic gates using the combination of universal NAND gates h...
In this paper we proposed a new design for all optical NAND gate. By combining nonlinear Kerr effect...
AbstractIn this paper we proposed a new design for all optical NAND gate. By combining nonlinear Ker...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...
A novel scheme for implementation of all-optical NOT logic gate based on photonic crystal ring reson...
In this work, we used the concept of Photonic Crystals (PhCs) for the computational simulation of t...
The research carried out in the field of optics and photonics with an idea to design and develop the...
The research carried out in the field of optics and photonics with an idea to design and develop the...
In this paper we investigate and optimize the design of an OR gate all optical circuit based on sili...
In this paper we investigate and optimize the design of an OR gate all optical circuit based on sili...
All-optical logic gates, including OR, XOR, NOT, XNOR, and NAND gates, are realized theoretically in...
The work presented in this paper potrays the working of NOT logic gate which is implemented using th...
AbstractIn this paper we proposed a new design for all optical NAND gate. By combining nonlinear Ker...
A compact and simple structure is designed to create an all-optical XOR logic gate using a two-dimen...
Optical logics will play a crucial role in the next generation all optical data processing networks....
In this paper, the design of all-optical logic gates using the combination of universal NAND gates h...
In this paper we proposed a new design for all optical NAND gate. By combining nonlinear Kerr effect...
AbstractIn this paper we proposed a new design for all optical NAND gate. By combining nonlinear Ker...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Physics, 2000.Includes bibliographic...