Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
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Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#2I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture).
Ask me anything.
[15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#3Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#4Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#5Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
- how fast is it (4KHz mentioned seems a bit slow, or is that a function of size?)?
- how far away from practical applications do you think you are?
- is the optical circuitry limited by the interaction with the electronic parts?
- the paper is already two years old, have there been interesting developments since then (in your lab, or elsewhere)?
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#6Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
* energy efficiency
* circuit density
* switching speed
* manufacturing cost
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#7Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
Is it possible to build RAM and SSDs in optical circuits yet? I ask because this has very interesting military uses that could push this forward if you could have devices impervious to electro-magnetic pulses.
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#8Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
Last I heard, you needed a high-powered laser on a non-linear material to turn transmission of a separate light signal on/off. Is that how things still work?
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#9Hi, I'm the author of this paper [15] cited in OP's publication. We are the author of the very first implementation of a fully programmable optical linear circuit in silicon. This is the basic building block to have an optical processor (in this specific architecture). Ask me anything. [15] - http://www.photonics.intec.ugent.be/download/pub_3834.pdf
How is the optical switching power needs being addressed? Last I heard, you needed a high-powered laser on a non-linear material to turn transmission of a separate light signal on/off. Is that how things still work?
Their hope is that by building a chip with lots of generally useful elements, many different industries will find it useful because they can just program the chip to utilize the components they need. (Fig. 6) Instead of computing with this chip, industry and researchers will be more interested in making things like optical transceivers. Having one common, reconfigurable chip that everyone uses would mean it could be mass produced at a lower cost, making research and production of silicon photonic systems more accessible.
At least that's what I've gathered from the paper - I'm definitely not an expert here. In theory I guess you could put optically switched gates in there too to make something more like an electrical FPGA - I'm sure that's long-term goal for the authors.
Re: Towards an optical FPGA – Programmable silicon photonic circuits [pdf]
#10Overall, good paper.