Projects per year
Abstract
Recent experiments on Cooper pair splitters using superconductor-quantum dot hybrids have embarked on creating entanglement in the solid-state, by engineering the sub-gap processes in the superconducting region. Using the thermoelectric Cooper pair splitter setup [Nat. Comm., 12, 21, (2021)] as a prototype, we present a comprehensive analysis of the fundamental components of the observed transport signal, aiming to critically clarify the operating regimes and confirm the nonlocal and nonclassical nature of correlations arising from crossed Andreev processes. By making a nexus with quantum discord, we identify operating points of nonlocal quantum correlations in the CPS device—information that cannot be extracted from the transport signal alone. A notable consequence of our analysis is the finding that contact-induced level broadening of the quantum dot’s discrete energy spectrum, along with its hybridization with the superconducting segment, can lead to shifted resonances in the crossed Andreev process as well as a parity reversal in the thermoelectric current. Our work thereby provides detailed insights into the gate voltage control of the quantum correlations in superconducting-hybrid Cooper pair splitters, revealing new avenues for harnessing quantum correlations in solid-state systems.
| Original language | English |
|---|---|
| Article number | 40 |
| Pages (from-to) | 1-8 |
| Number of pages | 8 |
| Journal | npj Quantum Information |
| Volume | 11 |
| Issue number | 1 |
| DOIs | |
| Publication status | Published - Dec 2025 |
| MoE publication type | A1 Journal article-refereed |
Funding
This work was supported by the Research Council of Finland (RCF) Project Nos. 341913 (EFT), 352926 (CoE, Quantum Technology Finland). The author BM wishes to acknowledge the support by the Science and Engineering Research Board (SERB), Government of India, Grant No. MTR/2021/000388. The authors SM and BM acknowledge support of the Dhananjay Joshi Foundation from an Endowment to IIT Bombay. The author BM and PH acknowledge funding from the InstituteQ and Aalto University visiting program and the MEC Global funding of Aalto University. AAZ acknowledges support from the QuantERA II Programme that has received funding from the European Union’s Horizon 2020 research and innovation programme under Grant Agreement No 101017733.
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- 1 Finished
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EFT: Topologically induced frustration and quantum phenomena
Hakonen, P. (Principal investigator), Lilja, I. (Project Member), Sergeicheva, E. (Project Member), Haque, M. (Project Member), Will, M. (Project Member) & Todoshchenko, I. (Project Member)
01/09/2021 → 31/08/2025
Project: RCF Academy Project