The Experts below are selected from a list of 108 Experts worldwide ranked by ideXlab platform
Farhad Mehdizadeh - One of the best experts on this subject based on the ideXlab platform.
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A 2*4 all optical decoder switch based on photonic crystal ring resonators
Journal of Modern Optics, 2014Co-Authors: Hamed Alipour-banaei, Somaye Serajmohammadi, Farhad Mehdizadeh, Hassangholizadeh-kashtibanAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect in this paper, we proposed a 2*4 all optical decoder switch. Our proposed structure has two logic Input ports and one Bias Input port. This decoder switch has four output ports. Via these two logic Input ports, we control the Bias signal to transfer toward which output port. We employed numerical methods such as plane wave expansion and finite difference time domain methods for analyzing the proposed structure.
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All optical decoder switch based on photonic crystal ring resonators
Optical and Quantum Electronics, 2014Co-Authors: Somaye Serajmohammadi, Hamed Alipour-banaei, Farhad MehdizadehAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect, in this paper we proposed a 1*2 all optical decoder switch. Our proposed structure has 1 logic Input port and one Bias Input port. This decoder switch has 2 output ports, via this logic Input port we control the Bias signal to transfer toward desired output port. We employed numerical methods such as plane wave expansion and finite difference time domain for analyzing the proposed structure.
Masato Okada - One of the best experts on this subject based on the ideXlab platform.
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Retrieval of branching sequences in associative memory model with common external Input and Bias Input
Journal of the Physical Society of Japan, 2007Co-Authors: Kentaro Katahira, Masaki Kawamura, Kazuo Okanoya, Masato OkadaAbstract:We investigate a recurrent neural network model with common external and Bias Inputs that can retrieve branching sequences. Retrieval of memory sequences is one of the most important functions of the brain. A lot of research has been done on neural networks that process memory sequences. Most of it has focused on fixed memory sequences. However, many animals can remember and recall branching sequences. Therefore, we propose an associative memory model that can retrieve branching sequences. Our model has Bias Input and common external Input. Kawamura and Okada reported that common external Input enables sequential memory retrieval in an associative memory model with auto- and weak cross-correlation connections. We show that retrieval processes along branching sequences are controllable with both the Bias Input and the common external Input. To analyze the behaviors of our model, we derived the macroscopic dynamical description as a probability density function. The results obtained by our theory agree with those obtained by computer simulations.
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retrieval of branching sequences in an associative memory model with common external Input and Bias Input
Journal of the Physical Society of Japan, 2007Co-Authors: Kentaro Katahira, Masaki Kawamura, Kazuo Okanoya, Masato OkadaAbstract:We investigate a recurrent neural network model with common external and Bias Inputs that can retrieve branching sequences. Retrieval of memory sequences is one of the most important functions of the brain. A lot of research has been done on neural networks that process memory sequences. Most of it has focused on fixed memory sequences. However, many animals can remember and recall branching sequences. Therefore, we propose an associative memory model that can retrieve branching sequences. Our model has Bias Input and common external Input. Kawamura and Okada reported that common external Input enables sequential memory retrieval in an associative memory model with auto- and weak cross-correlation connections. We show that retrieval processes along branching sequences are controllable with both the Bias Input and the common external Input. To analyze the behaviors of our model, we derived the macroscopic dynamical description as a probability density function. The results obtained by our theory agree with...
Somaye Serajmohammadi - One of the best experts on this subject based on the ideXlab platform.
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A 2*4 all optical decoder switch based on photonic crystal ring resonators
Journal of Modern Optics, 2014Co-Authors: Hamed Alipour-banaei, Somaye Serajmohammadi, Farhad Mehdizadeh, Hassangholizadeh-kashtibanAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect in this paper, we proposed a 2*4 all optical decoder switch. Our proposed structure has two logic Input ports and one Bias Input port. This decoder switch has four output ports. Via these two logic Input ports, we control the Bias signal to transfer toward which output port. We employed numerical methods such as plane wave expansion and finite difference time domain methods for analyzing the proposed structure.
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All optical decoder switch based on photonic crystal ring resonators
Optical and Quantum Electronics, 2014Co-Authors: Somaye Serajmohammadi, Hamed Alipour-banaei, Farhad MehdizadehAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect, in this paper we proposed a 1*2 all optical decoder switch. Our proposed structure has 1 logic Input port and one Bias Input port. This decoder switch has 2 output ports, via this logic Input port we control the Bias signal to transfer toward desired output port. We employed numerical methods such as plane wave expansion and finite difference time domain for analyzing the proposed structure.
Hamed Alipour-banaei - One of the best experts on this subject based on the ideXlab platform.
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A 2*4 all optical decoder switch based on photonic crystal ring resonators
Journal of Modern Optics, 2014Co-Authors: Hamed Alipour-banaei, Somaye Serajmohammadi, Farhad Mehdizadeh, Hassangholizadeh-kashtibanAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect in this paper, we proposed a 2*4 all optical decoder switch. Our proposed structure has two logic Input ports and one Bias Input port. This decoder switch has four output ports. Via these two logic Input ports, we control the Bias signal to transfer toward which output port. We employed numerical methods such as plane wave expansion and finite difference time domain methods for analyzing the proposed structure.
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All optical decoder switch based on photonic crystal ring resonators
Optical and Quantum Electronics, 2014Co-Authors: Somaye Serajmohammadi, Hamed Alipour-banaei, Farhad MehdizadehAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect, in this paper we proposed a 1*2 all optical decoder switch. Our proposed structure has 1 logic Input port and one Bias Input port. This decoder switch has 2 output ports, via this logic Input port we control the Bias signal to transfer toward desired output port. We employed numerical methods such as plane wave expansion and finite difference time domain for analyzing the proposed structure.
Hassangholizadeh-kashtiban - One of the best experts on this subject based on the ideXlab platform.
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A 2*4 all optical decoder switch based on photonic crystal ring resonators
Journal of Modern Optics, 2014Co-Authors: Hamed Alipour-banaei, Somaye Serajmohammadi, Farhad Mehdizadeh, Hassangholizadeh-kashtibanAbstract:Based on photonic crystal ring resonators and nonlinear Kerr effect in this paper, we proposed a 2*4 all optical decoder switch. Our proposed structure has two logic Input ports and one Bias Input port. This decoder switch has four output ports. Via these two logic Input ports, we control the Bias signal to transfer toward which output port. We employed numerical methods such as plane wave expansion and finite difference time domain methods for analyzing the proposed structure.