A quantum-light source that delivers photons with a high brightness and a high degree of entanglement is fundamental for the development of efficient entanglement-based quantum-key distribution systems. Among all possible candidates, epitaxial quantum dots are currently emerging as one of the brightest sources of highly entangled photons. However, the optimization of both brightness and entanglement currently requires different technologies that are difficult to combine in a scalable manner. In this work, we overcome this challenge by developing a novel device consisting of a quantum dot embedded in a circular Bragg resonator, in turn, integrated onto a micromachined piezoelectric actuator. The resonator engineers the light-matter interaction to empower extraction efficiencies up to 0.69(4). Simultaneously, the actuator manipulates strain fields that tune the quantum dot for the generation of entangled photons with corrected fidelities to a maximally entangled state up to 0.96(1). This hybrid technology has the potential to overcome the limitations of the key rates that plague QD-based entangled sources for entanglement-based quantum key distribution and entanglement-based quantum networks.

A source of entangled photons based on a cavity-enhanced and strain-tuned GaAs quantum dot / Rota, Michele B.; Krieger, Tobias M.; Buchinger, Quirin; Beccaceci, Mattia; Neuwirth, Julia; Huet, Hêlio; Horová, Nikola; Lovicu, Gabriele; Ronco, Giuseppe; Covre da Silva, Saimon F.; Pettinari, Giorgio; Moczała-Dusanowska, Magdalena; Kohlberger, Christoph; Manna, Santanu; Stroj, Sandra; Freund, Julia; Yuan, Xueyong; Schneider, Christian; Ježek, Miroslav; Höfling, Sven; BASSO BASSET, Francesco; Huber-Loyola, Tobias; Rastelli, Armando; Trotta, Rinaldo. - In: ELIGHT. - ISSN 2662-8643. - 4:13(2024), pp. 1-13. [10.1186/s43593-024-00072-8]

A source of entangled photons based on a cavity-enhanced and strain-tuned GaAs quantum dot

Michele B. Rota;Mattia Beccaceci;Julia Neuwirth;Giuseppe Ronco;Giorgio Pettinari;Francesco Basso Basset;Rinaldo Trotta
2024

Abstract

A quantum-light source that delivers photons with a high brightness and a high degree of entanglement is fundamental for the development of efficient entanglement-based quantum-key distribution systems. Among all possible candidates, epitaxial quantum dots are currently emerging as one of the brightest sources of highly entangled photons. However, the optimization of both brightness and entanglement currently requires different technologies that are difficult to combine in a scalable manner. In this work, we overcome this challenge by developing a novel device consisting of a quantum dot embedded in a circular Bragg resonator, in turn, integrated onto a micromachined piezoelectric actuator. The resonator engineers the light-matter interaction to empower extraction efficiencies up to 0.69(4). Simultaneously, the actuator manipulates strain fields that tune the quantum dot for the generation of entangled photons with corrected fidelities to a maximally entangled state up to 0.96(1). This hybrid technology has the potential to overcome the limitations of the key rates that plague QD-based entangled sources for entanglement-based quantum key distribution and entanglement-based quantum networks.
2024
quantum dots; entangled photons; photonic cavity; strain tuning
01 Pubblicazione su rivista::01a Articolo in rivista
A source of entangled photons based on a cavity-enhanced and strain-tuned GaAs quantum dot / Rota, Michele B.; Krieger, Tobias M.; Buchinger, Quirin; Beccaceci, Mattia; Neuwirth, Julia; Huet, Hêlio; Horová, Nikola; Lovicu, Gabriele; Ronco, Giuseppe; Covre da Silva, Saimon F.; Pettinari, Giorgio; Moczała-Dusanowska, Magdalena; Kohlberger, Christoph; Manna, Santanu; Stroj, Sandra; Freund, Julia; Yuan, Xueyong; Schneider, Christian; Ježek, Miroslav; Höfling, Sven; BASSO BASSET, Francesco; Huber-Loyola, Tobias; Rastelli, Armando; Trotta, Rinaldo. - In: ELIGHT. - ISSN 2662-8643. - 4:13(2024), pp. 1-13. [10.1186/s43593-024-00072-8]
File allegati a questo prodotto
File Dimensione Formato  
Rota_A-source_2024.pdf

accesso aperto

Note: Articolo su rivista
Tipologia: Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza: Creative commons
Dimensione 1.53 MB
Formato Adobe PDF
1.53 MB Adobe PDF

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1716383
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus ND
  • ???jsp.display-item.citation.isi??? ND
social impact