Robot | Path | Permission |
GoogleBot | / | ✔ |
BingBot | / | ✔ |
BaiduSpider | / | ✔ |
YandexBot | / | ✔ |
Title | Quantum Circuit |
Description | Website of the Quantum Circuit Group at Ecole Normale Superieure de Lyon, |
Keywords | N/A |
WebSite | physinfo.fr |
Host IP | 217.160.215.210 |
Location | Germany |
Site | Rank |
physicform.net | 8,763,881 |
physik.ca | 1,210,491 |
Euro€2,780,039
Dernière mise à jour: 2022-06-05 03:53:41
physinfo.fr a un classement mondial Semrush de 3,807,250. physinfo.fr a une valeur estimée à € 2,780,039, sur la base de ses revenus publicitaires estimés. physinfo.fr reçoit environ 320,774 visiteurs uniques chaque jour. Son serveur Web est situé au Germany, avec l'adresse IP 217.160.215.210.Selon SiteAdvisor, physinfo.fr est sûr à visiter. |
Valeur d'achat/vente | Euro€2,780,039 |
Revenus publicitaires quotidiens | Euro€2,567 |
Revenus publicitaires mensuels | Euro€76,986 |
Revenus publicitaires annuels | Euro€923,829 |
Visiteurs uniques quotidiens | 21,385 |
Remarque: Toutes les valeurs de trafic et de revenus sont des estimations. |
Host | Type | TTL | Data |
physinfo.fr. | A | 1799 | IP: 217.160.215.210 |
physinfo.fr. | AAAA | 3599 | IPV6: 2001:8d8:1800:8567::1 |
physinfo.fr. | NS | 86400 | NS Record: ns1118.ui-dns.biz. |
physinfo.fr. | NS | 86400 | NS Record: ns1096.ui-dns.com. |
physinfo.fr. | NS | 86400 | NS Record: ns1120.ui-dns.de. |
physinfo.fr. | NS | 86400 | NS Record: ns1123.ui-dns.org. |
physinfo.fr. | MX | 3600 | MX Record: 10 mx00.ionos.fr. |
physinfo.fr. | MX | 3600 | MX Record: 10 mx01.ionos.fr. |
QC GROUP MEMBERS FACULTY STUDENTS AND POSTDOCS QUANTIC TEAM ALUMNI PUBLICATIONS ARTICLES THESES EDITED BOOKS CONTACT LINKS en fr ENS LYON PHYSICS DEPT NLPH TEAM MEMBERS PUB CONTACT Los Angeles We had the best time playing at Venice Beach! --> Quantic Team Picture of the Quantic Team in 2016 Ecole Normale Supérieure de Lyon Garden of the institute --> QUANTUM CIRCUIT GROUP Ecole Normale Supérieure de Lyon Our research group explores the physics of information in quantum devices, which we design, realize and measure. These objects can be viewed as quantum machines processing information. In contrast with ordinary devices, in which quantum mechanics enters only at the level of individual electrons, the degrees of freedom of these machines at the signal level behave according to the laws of quantum mechanics. Topics of our current interest include amplification of quantum signals, electron spin resonance at the nanoscale, quantum feedback and trajectory, thermodynamics of |
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