Optical control of TMDCs valley pseudospin qubits: Difference between revisions

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===Experimental setup===
===Experimental setup===


===Quantum simulator===
====Quantum simulator====


===Qubit initialisation===
====Qubit initialisation====


===Qubit control===
====Qubit control====


===Qubit readout===
====Qubit readout====


==Results==
==Results==

Revision as of 15:26, 16 March 2021

Quantum dots or single electron transistors, allow for individual control of single charge or spin. In addition, some semiconductor monolayers possess a sizeable direct bandgap of ≈1.5–2 eV in the optical range allowing electrostatic confinement and optical manipulation of carriers. Therefore, we try to adopt the method of this theoretical paper, and see if we can control single qubit or couple 2 qubits optically.

Linked project

This project is conducted by the same people as 👉 Control over the atomic spins within certain molecules by NMR technique

Group members

Description

Something you may not know

What are K & K' points?

K & K' points
  • K-points are sampling points of Brillouin zone in reciprocal lattice

Choose monolayer TMDCs materials or 2D heterostructure?

Method

Experimental setup

Quantum simulator

Qubit initialisation

Qubit control

Qubit readout

Results

References

Spin-valley qubit in nanostructures of monolayer semiconductors: Optical control and hyperfine interaction[1]
Opto-valleytronics in the 2D van der Waals heterostructure[2]