scholarly journals Towards all-optical atom chips based on optical waveguides

2020 ◽  
Vol 22 (5) ◽  
pp. 053003
Author(s):  
Yuri B Ovchinnikov ◽  
Folly Eli Ayi-Yovo
2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Hamed Azhdari ◽  
Sahel Javahernia

Abstract Increasing the speed of operation in all optical signal processing is very important. For reaching this goal one needs high speed optical devices. Optical half adders are one of the important building blocks required in optical processing. In this paper an optical half adder was proposed by combining nonlinear photonic crystal ring resonators with optical waveguides. Finite difference time domain method wase used for simulating the final structure. The simulation results confirmed that the rise time for the proposed structure is about 1 ps.


2018 ◽  
Vol 43 (8) ◽  
pp. 1631 ◽  
Author(s):  
Niklas M. Lüpken ◽  
Tim Hellwig ◽  
Martin Schnack ◽  
Jörn P. Epping ◽  
Klaus-J. Boller ◽  
...  

2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Asghar Askarian

Abstract In optical processing systems, multiplexer is used to design optical devices such as arithmetic logic unit (ALU) and shift register (SR). Through this paper, we investigate the application of nonlinear photonic crystal ring resonator (PhCRR) based on nonlinear Kerr effect for realizing an all optical 2 × 1 multiplexer. The structure consists of two PhCRRs and five optical waveguides using hexagonal lattice silicon (Si) rods with a background of air. Performance of all optical 2 × 1 multiplexer is replicated with the help of finite difference time domain (FDTD) procedure at a wavelength of 1571 nm, and simulations presented an ultra-compact optical structure with ultra-fast switching speed.


2006 ◽  
Vol 16 (06) ◽  
pp. 1739-1752 ◽  
Author(s):  
K. HIZANIDIS ◽  
S. DROULIAS ◽  
I. TSOPELAS ◽  
N. K. EFREMIDIS ◽  
D. N. CHRISTODOULIDES

A circular array of optical waveguides collectively coupled with a central core is investigated. Nonlinear losses, both linear and nonlinear coupling as well as energy transfer between neighboring array elements and between the array and the core are allowed. The concept is ideal for the design of high power stable amplifiers as well as of all-optical data processing devices in optical communications. The existence of stable steady-state continuous wave modes as well as of localized solitary and breathing type modes is demonstrated. These properties render the proposed system functionally rich, far more controllable than a planar one and easier to stabilize.


2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Asghar Askarian

Abstract In this work, the authors investigate the new structure of all optical half subtractor in a two dimensional photonic crystal based on wave interference and phase shift keying technique. The suggested structure is designed using 10 optical waveguides and one defect in the basic structure. The numeral methods such as plane wave expansion and finite difference time domain are used to analyze the proposed structure. According to obtained results, the rise and fall times, the working bit rate, the minimum and maximum values of the normalized power at ON and OFF states for output ports are 0.1 ps, 0.05 ps, 5 Tbit/s, 77 and 17%, respectively. According to results, high switching speed, compactness, low power consumption and ultra-fast operation are the main advantages of designed optical half subtractor compared with the previous structures.


Nanophotonics ◽  
2020 ◽  
Vol 9 (12) ◽  
pp. 3733-3753 ◽  
Author(s):  
Alina Karabchevsky ◽  
Aviad Katiyi ◽  
Angeleene S. Ang ◽  
Adir Hazan

AbstractOn-chip nanophotonic devices are a class of devices capable of controlling light on a chip to realize performance advantages over ordinary building blocks of integrated photonics. These ultra-fast and low-power nanoscale optoelectronic devices are aimed at high-performance computing, chemical, and biological sensing technologies, energy-efficient lighting, environmental monitoring and more. They are increasingly becoming an attractive building block in a variety of systems, which is attributed to their unique features of large evanescent field, compactness, and most importantly their ability to be configured according to the required application. This review summarizes recent advances of integrated nanophotonic devices and their demonstrated applications, including but not limited to, mid-infrared and overtone spectroscopy, all-optical processing on a chip, logic gates on a chip, and cryptography on a chip. The reviewed devices open up a new chapter in on-chip nanophotonics and enable the application of optical waveguides in a variety of optical systems, thus are aimed at accelerating the transition of nanophotonics from academia to the industry.


Open Physics ◽  
2008 ◽  
Vol 6 (3) ◽  
Author(s):  
Ivan Garanovich ◽  
Andrey Sukhorukov ◽  
Yuri Kivshar

AbstractWe overview our recent theoretical results on spatio-spectral control, diffraction management, and broadband all-optical switching of polychromatic light in periodically curved one and two dimensional arrays of coupled optical waveguides. In particular, we show that polychromatic light beams and patterns produced by white-light and supercontinuum sources can experience wavelength-independent normal, anomalous, or zero diffraction in specially designed structures. We also demonstrate that in the nonlinear regime, it is possible to achieve broadband all-optical switching of polychromatic light in a directional waveguide coupler with special bending of the waveguide axes. Our results suggest novel opportunities for creation of all-optical logical gates and switches which can operate in a very broad frequency region, e.g., covering the entire visible spectrum.


2015 ◽  
Vol 27 (17) ◽  
pp. 1857-1860 ◽  
Author(s):  
L. Monteagudo-Lerma ◽  
F. B. Naranjo ◽  
M. Jimenez-Rodriguez ◽  
P. A. Postigo ◽  
E. Barrios ◽  
...  

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