H2020Individual fellowship2016–2018

MASSS · Manipulation of a Single Spin in a Superconductor

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2016-12-01 → 2018-11-30
EU contribution
€173,076
Participants
1
Scheme
MSCA-IF-EF-ST

Lines connect the coordinator with its partners.

Results in brief

Manipulation of a Single Spin in a Superconductor

Controlling and manipulating the quantum state of individual quantum systems is presently an extremely active and fertile field in atomic and condensed matter physics, with a profound impact on our understanding of the laws of quantum physics and with applications in many fields ranging from metrology to quantum information. The MASSS project’s goal was to achieve the coherent manipulation of a single electronic spin within a superconducting device. I based my strategy on the combination of two basic condensed matter physics phenomena. On the one hand, the trapping of an electron in one of the discrete localized states -called Andreev states- that form at a weak-link between two superconductors. On the other hand, the coupling of the electron spin degree of freedom to its trajectory in space- called spin-orbit coupling-, which is particularly strong in some semiconducting materials. This combination was therefore expected to lead, even in absence of a magnetic field, to spin-split Andreev states for an electron trapped in a semiconducting weak link, the fundamental required ingredient for the spin manipulation. The project was successful on all its aspects. The original results of the experiments that I carried out were recently published in Phys. Rev. X 9 011010 (2019), and constitute an important step in the field of superconducting spintronics. Moreover, this Marie Skłodowska-Curie fellowship allowed me to build strong collaborations with several groups in Europe and to interact with many of the field leading scientists during international conferences and visits. Finally, it has provided me with the necessary tools to start a career as an independent researcher.

Data: CORDIS, © European Union

Project objective

I propose to perform the coherent manipulation of the spin of a single superconducting quasiparticle.To achieve this challenging goal I will fabricate a Josephson weak-link coupling two superconducting electrodes through the two-dimensional electron gas of an AlSb/InAs/AlSb quantum well. The weak-link configuration allows to single out one superconducting quasiparticle, by trapping it in a low-energy discrete state (an Andreev bound state) completely disconnected from the continuum of excitations above the gap. The energy of this state depends on the superconducting phase difference across the link. It can be tuned by placing the weak-link in a superconducting loop threaded by a magnetic flux.The combination of a finite superconducting phase difference and the strong spin-orbit coupling energy in InAs lifts the degeneracy of the two spin states of the quasiparticle, which can therefore be addressed.In order to manipulate and probe the quantum state of the spin of the trapped quasiparticle I will couple this hybrid structure to the electromagnetic field of a microwave resonator in a circuit quantum electrodynamics (cQED) architecture.This project opens a new research path in the field of superconducting spintronics and leads to the exploration of new topological phases in multi-terminal devices.

Original text from CORDIS.

Participants

  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisCoordinatorFrance

Links

Data: CORDIS, © European Union