We propose a volatile static all-optical memory capable of storing phase information of a slowly-varying electric field. The scheme and its realization (a memory circuit) are based on two mutually coupled lasers subject to external optical injection. The proposed circuit has a single optical input for write and hold operations and two opposite-sign outputs for reading the memory. The proposed circuit operates with a single wavelength of light, a single direction of propagation, and without a need to switch the state of polarization. We prove mathematically that the proposed arrangement has equilibrium points that may discreetly quantify and store the phase in a bistable manner. The circuit is studied numerically for solid-state and semicond...
We investigate a system consisting of multiple ring lasers coupled by a single gain medium. All the ...
Abstract—We demonstrate the use of a single laser diode as an optical memory element. When continuou...
An all-optical regenerative memory device using a single loop mirror and a semiconductor optical amp...
A multistate optical memory based on serially inter-connected lasers is presented. We show that only...
A multistate optical memory based on serially interconnected lasers is presented. We show that only ...
An all-optical memory with three states is presented. The memory is realized from three coupled ring...
An all-optical memory with three states is presented. The memory is realized from three coupled ring...
International audiencePhotonic implementations of reservoir computing (RC) have been receiving consi...
Collocated data processing and storage are the norm in biological systems. Indeed, the von Neumann c...
A multi-state optical flip-flop memory based on cascaded lasers is presented. We show that only one ...
A multi-state optical flip-flop memory based on cascaded lasers is presented. We show that only one ...
Fig. 1: Bistable polarization operation in a VCSEL Abstract: A novel optical buffer memory with shi...
An all-optical memory with three states is presented. The optical memory is realized from three-coup...
Implementing on-chip non-volatile photonic memories has been a long-term, yet elusive goal. Photoni...
We investigate a system consisting of multiple ring lasers coupled by a single gain medium. All the ...
Abstract—We demonstrate the use of a single laser diode as an optical memory element. When continuou...
An all-optical regenerative memory device using a single loop mirror and a semiconductor optical amp...
A multistate optical memory based on serially inter-connected lasers is presented. We show that only...
A multistate optical memory based on serially interconnected lasers is presented. We show that only ...
An all-optical memory with three states is presented. The memory is realized from three coupled ring...
An all-optical memory with three states is presented. The memory is realized from three coupled ring...
International audiencePhotonic implementations of reservoir computing (RC) have been receiving consi...
Collocated data processing and storage are the norm in biological systems. Indeed, the von Neumann c...
A multi-state optical flip-flop memory based on cascaded lasers is presented. We show that only one ...
A multi-state optical flip-flop memory based on cascaded lasers is presented. We show that only one ...
Fig. 1: Bistable polarization operation in a VCSEL Abstract: A novel optical buffer memory with shi...
An all-optical memory with three states is presented. The optical memory is realized from three-coup...
Implementing on-chip non-volatile photonic memories has been a long-term, yet elusive goal. Photoni...
We investigate a system consisting of multiple ring lasers coupled by a single gain medium. All the ...
Abstract—We demonstrate the use of a single laser diode as an optical memory element. When continuou...
An all-optical regenerative memory device using a single loop mirror and a semiconductor optical amp...