Skip to main content
European Commission logo
italiano italiano
CORDIS - Risultati della ricerca dell’UE
CORDIS

Josephson maser and heat transport in dissipative open quantum systems

Descrizione del progetto

I meccanismi di trasferimento del calore nei sistemi quantistici sono promettenti per il calcolo quantistico

I sistemi quantistici non sono completamente isolati dall’ambiente circostante. La loro interazione con altri sistemi quantistici cambia in modo significativo le loro dinamiche e si traduce in una dissipazione quantistica. Finanziato dal programma Marie Skłodowska-Curie, il progetto XmonMASER studierà il trasporto del calore in sistemi quantistici aperti dissipativi. Esso esplorerà gli effetti anarmonici che si verificano durante il trasporto di calore in tali sistemi. Il progetto si propone inoltre di realizzare un maser Josephson per dimostrare l’emissione coerente di fotoni a microonde guidati da un qubit transmon superconduttore. Il lavoro avrà implicazioni per la microelettronica e il calcolo quantistico.

Obiettivo

My proposal is devoted to study the heat transport in dissipative open quantum systems. My main scientific and technological goals are: (i) to study the effect of anharmonicity in the heat transport in a dissipative open quantum system; and (ii) to realize a Josephson maser, to demonstrate coherent emission of microwave photons driven by a superconducting transmon qubit. To study heat transport in the quantum limit I propose a device with a qubit coupled to two resonators, each terminated by mesoscopic normal-metal reservoirs acting as source and drain thermal baths. When a thermal bias is applied across the system, the heat is transmitted between the two mesoscopic reservoirs via the qubit, and dissipated in the drain reservoir. With a sufficiently electron temperature in the heated reservoir, the population inversion prerequisite will be satisfied, and the proposed system will work as a maser, allowing for efficient on-chip generation of coherent microwave photons at low temperatures. The proposed system provides a platform to study the heat transport in dissipative open quantum systems, and both spontaneous and stimulated microwave emission. Therefore, I will contribute a pioneering technology to the field of quantum technology, and environment engineering for quantum technologies, in addition to developing a promising tool for quantum thermodynamics. The fundamental knowledge of quantum physics targeted in my proposal will be immediately applicable in several applied fields; the microelectronics industry, quantum computers, and communication sectors, and it will have a great impact on society both in Europe and globally. This fellowship will advance my career plans, enabling me to become an expert in circuit quantum thermodynamics, and receive leadership and management-oriented training. In return, I will transfer my theoretical and experimental knowledge in quantum photonics and optics obtained during my PhD to PICO group.

Coordinatore

AALTO KORKEAKOULUSAATIO SR
Contribution nette de l'UE
€ 190 680,96
Indirizzo
OTAKAARI 1
02150 Espoo
Finlandia

Mostra sulla mappa

Regione
Manner-Suomi Helsinki-Uusimaa Helsinki-Uusimaa
Tipo di attività
Higher or Secondary Education Establishments
Collegamenti
Costo totale
€ 190 680,96