Row 3705
Content Data
This page contains data entry 3705 from the Axioma AXP content repository. The structured data below represents the complete record for this entry.
an understand how we can use the existing technology of magnetic rails to control Trapped ions since they have charge, it's easy to control them with magnetic field
On the other hand Neutral atoms has no charge and we utilise Rydberg state. Currently all the neutral atoms approaches from atom computing to Harvard to Wisconsin to QuERA use gases in vacuum and optical tweezers, there's no solid state platform.
But i recently discovered there's this approach of designing Atom chips to trap neutral atoms. Is this something which is different than Optical tweezers? https://ieeexplore.ieee.orrg/document/4628507 Or https://www.osti.gov/servlets/purl/943848#:~:text=Neutral%20atom%20chips%20have%20generated,atomic%20cooling%20and%20trapping%20experiments.
If yes, can we envision a technology which uses integrated Photonics network the way trapped ions does to control these neutral atoms? Where optical tweezers are miniaturised and encase the atoms.
Note: QuERA in its roadmap shows a desire to use integrated Photonics for Long-term fault tolerant systems ( https://www.quera.com/our-quantum-roadmap Step 3 Scalable control Based on photonic integrated circuits)
| Field | Value |
|---|---|
| text | an understand how we can use the existing technology of magnetic rails to control Trapped ions since they have charge, it's easy to control them with magnetic field On the other hand Neutral atoms has no charge and we utilise Rydberg state. Currently all the neutral atoms approaches from atom computing to Harvard to Wisconsin to QuERA use gases in vacuum and optical tweezers, there's no solid state platform. But i recently discovered there's this approach of designing Atom chips to trap neut… |
| label | r/quantumcomputing |
| dataType | post |
| communityName | r/QuantumComputing |
| datetime | 2024-03-20 |
| username_encoded | Z0FBQUFBQm5LakwxRm92SEZmUlNwTkJaX1RhNlY5TWlVWlgwNEVEZHA4WG9KOWVsMkZZNzhpcTFEVlhpanFucENSWi1fSmg5ckZVb2JUc3NZb1VwS0NKOW1Bbm96eFBpTHc9PQ== |
| url_encoded | Z0FBQUFBQm5Lak9FVmVMOW1menB2Uy1YVTBheE5Ld3NhcVJsekI2RF9qZU94dHlQLVVFZ3B0MzM1a0IzcnlDZXlONDQ0WndHSWF3WlFqSS04RHNVb1dFMmdLY3dNVUtwb2JxZ0lkbHhsYnRDb3UxNVN4VmRJS281QkhDMndDanpTZnVlVWtTckFOMzI5T0dvalVLaXR2NGNwZUtpQUpTeGdUbElBdklhNlpKUzlLWVItME9PZXEycGdHeExlNDJyWDhQTl93XzJsSE5mcTdEbHNiM2dGU09Yei1SLVdOY0VQQT09 |
Raw Record
{
"text": "an understand how we can use the existing technology of magnetic rails to control Trapped ions since they have charge, it's easy to control them with magnetic field \n\nOn the other hand Neutral atoms has no charge and we utilise Rydberg state. Currently all the neutral atoms approaches from atom computing to Harvard to Wisconsin to QuERA use gases in vacuum and optical tweezers, there's no solid state platform. \n\nBut i recently discovered there's this approach of designing Atom chips to trap neutral atoms. Is this something which is different than Optical tweezers?\nhttps://ieeexplore.ieee.orrg/document/4628507\nOr \nhttps://www.osti.gov/servlets/purl/943848#:~:text=Neutral%20atom%20chips%20have%20generated,atomic%20cooling%20and%20trapping%20experiments.\n\nIf yes, can we envision a technology which uses integrated Photonics network the way trapped ions does to control these neutral atoms? Where optical tweezers are miniaturised and encase the atoms.\n\nNote: QuERA in its roadmap shows a desire to use integrated Photonics for Long-term fault tolerant systems\n( https://www.quera.com/our-quantum-roadmap\nStep 3 Scalable control\nBased on photonic integrated circuits)",
"label": "r/quantumcomputing",
"dataType": "post",
"communityName": "r/QuantumComputing",
"datetime": "2024-03-20",
"username_encoded": "Z0FBQUFBQm5LakwxRm92SEZmUlNwTkJaX1RhNlY5TWlVWlgwNEVEZHA4WG9KOWVsMkZZNzhpcTFEVlhpanFucENSWi1fSmg5ckZVb2JUc3NZb1VwS0NKOW1Bbm96eFBpTHc9PQ==",
"url_encoded": "Z0FBQUFBQm5Lak9FVmVMOW1menB2Uy1YVTBheE5Ld3NhcVJsekI2RF9qZU94dHlQLVVFZ3B0MzM1a0IzcnlDZXlONDQ0WndHSWF3WlFqSS04RHNVb1dFMmdLY3dNVUtwb2JxZ0lkbHhsYnRDb3UxNVN4VmRJS281QkhDMndDanpTZnVlVWtTckFOMzI5T0dvalVLaXR2NGNwZUtpQUpTeGdUbElBdklhNlpKUzlLWVItME9PZXEycGdHeExlNDJyWDhQTl93XzJsSE5mcTdEbHNiM2dGU09Yei1SLVdOY0VQQT09"
}
Entry Information
- Entry ID: 3705
- Repository: Axioma AXP
- Dataset: arrmlet/reddit_dataset_36
- Total Entries: 100,000