Row 934

Row ID: 934 | Dataset Entry | Axioma AXP Content Repository

Content Data

This page contains data entry 934 from the Axioma AXP content repository. The structured data below represents the complete record for this entry.

I understand Neuralink is approaching human clinical trials. In your professional opinion, would it be advantageous to utilize silicon optical ring resonator in order to achieve quantum entanglement on the Neuralink platform? I believe such a configuration could provide real-time feedback for reducing latency between prosthetics and implants.

One of the principle challenges would be finding a frequency which is biocompatible to stimulate neurons and able to achieve a communication frequency. This frequency will determine the radius of the optical ring resonator used. Microfabrication of silicon optical ring resonators has increased in recent years.

Alternatively, it seems you could couple and amplify electrical impulses from an to the brain to emulate more complex sensations.

​

**TL;DR:** I'm wondering if quantum sensation is possible in a manner similar to "ghost imaging" through optical feedback to the brain form prosthetic through a silicon optical microring resonator capable of achieving nonlinear parametric down conversion.

​

Qubit entanglement between ring-resonator photon-pair sources on a silicon chip:[https://www.nature.com/articles/ncomms8948](https://www.nature.com/articles/ncomms8948)

Photonic ICs, Silicon Photonics & Programmable Photonics - HandheldOCT webinar:[https://www.youtube.com/watch?v=CBhdLTTbYoM](https://www.youtube.com/watch?v=CBhdLTTbYoM)

Parametric down-conversion photon-pair source on a nanophotonic chip:[https://www.nature.com/articles/lsa2016249](https://www.nature.com/articles/lsa2016249)

An introduction to ghost imaging: quantum and classical:[https://royalsocietypublishing.org/doi/10.1098/rsta.2016.0233](https://royalsocietypublishing.org/doi/10.1098/rsta.2016.0233)

FieldValue
text I understand Neuralink is approaching human clinical trials. In your professional opinion, would it be advantageous to utilize silicon optical ring resonator in order to achieve quantum entanglement on the Neuralink platform? I believe such a configuration could provide real-time feedback for reducing latency between prosthetics and implants. One of the principle challenges would be finding a frequency which is biocompatible to stimulate neurons and able to achieve a communication frequency. Th…
label r/neuralink
dataType post
communityName r/Neuralink
datetime 2022-01-22
username_encoded Z0FBQUFBQm5Lakx6b01RbUF2aVh5LThnMHhzZl9vYUJmd1N0N1BXY2dWM2RYNER5RDl4VU9ITDMwV2lyUVJSNUVvcWk5MUJfNlF6Y1lOc2hocFdHd01HYXdIcUozeXd1T2c9PQ==
url_encoded Z0FBQUFBQm5Lak9ER2p1U0F5MWkyQ3hmM21EU1lwYTBBamlEdVZjTWRaTUNHYm5wZ29aeEk5dVJjd1hrekYwN196dXRRZTdBaUc4RWM4RG84NjZCMW85LXdJS01vRTZTLUxtN3ZBM3dvUmktZTBYeWgwaFVMVjZCM25rWExkOFpSeHFpT2lHTDJoRldkUlBOWHQxcXBkOXc0Wlp3czBvYmxkWGluMHl3ZTBRTHFzaFhMcVhnRl9xblRBNHBIc1VFcTlSN3A4U2gxUExE

Raw Record

{
  "text": "I understand Neuralink is approaching human clinical trials. In your professional opinion, would it be advantageous to utilize silicon optical ring resonator in order to achieve quantum entanglement on the Neuralink platform? I believe such a configuration could provide real-time feedback for reducing latency between prosthetics and implants.\n\nOne of the principle challenges would be finding a frequency which is biocompatible to stimulate neurons and able to achieve a communication frequency. This frequency will determine the radius of the optical ring resonator used. Microfabrication of silicon optical ring resonators has increased in recent years. \n\nAlternatively, it seems you could couple and amplify electrical impulses from an to the brain to emulate more complex sensations. \n\n​\n\n**TL;DR:** I'm wondering if quantum sensation is possible in a manner similar to \"ghost imaging\" through optical feedback to the brain form prosthetic through a silicon optical microring resonator capable of achieving nonlinear parametric down conversion.\n\n​\n\nQubit entanglement between ring-resonator photon-pair sources on a silicon chip:[https://www.nature.com/articles/ncomms8948](https://www.nature.com/articles/ncomms8948)\n\nPhotonic ICs, Silicon Photonics & Programmable Photonics - HandheldOCT webinar:[https://www.youtube.com/watch?v=CBhdLTTbYoM](https://www.youtube.com/watch?v=CBhdLTTbYoM)\n\nParametric down-conversion photon-pair source on a nanophotonic chip:[https://www.nature.com/articles/lsa2016249](https://www.nature.com/articles/lsa2016249)\n\nAn introduction to ghost imaging: quantum and classical:[https://royalsocietypublishing.org/doi/10.1098/rsta.2016.0233](https://royalsocietypublishing.org/doi/10.1098/rsta.2016.0233)",
  "label": "r/neuralink",
  "dataType": "post",
  "communityName": "r/Neuralink",
  "datetime": "2022-01-22",
  "username_encoded": "Z0FBQUFBQm5Lakx6b01RbUF2aVh5LThnMHhzZl9vYUJmd1N0N1BXY2dWM2RYNER5RDl4VU9ITDMwV2lyUVJSNUVvcWk5MUJfNlF6Y1lOc2hocFdHd01HYXdIcUozeXd1T2c9PQ==",
  "url_encoded": "Z0FBQUFBQm5Lak9ER2p1U0F5MWkyQ3hmM21EU1lwYTBBamlEdVZjTWRaTUNHYm5wZ29aeEk5dVJjd1hrekYwN196dXRRZTdBaUc4RWM4RG84NjZCMW85LXdJS01vRTZTLUxtN3ZBM3dvUmktZTBYeWgwaFVMVjZCM25rWExkOFpSeHFpT2lHTDJoRldkUlBOWHQxcXBkOXc0Wlp3czBvYmxkWGluMHl3ZTBRTHFzaFhMcVhnRl9xblRBNHBIc1VFcTlSN3A4U2gxUExE"
}

Entry Information