Quantum Coherent Transport in Atoms & Electrons

By Yong P. Chen

Department of Physics and Astronomy, Purdue University, West Lafayette, IN

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Abstract

I will discuss some recent experimental examples from my lab studying quantum coherent transport and interferometry in electrons as well as cold atoms. For example, phase coherent electron transport and interference around a cylinder realized in a nanowire of topological insulator gives rise to a novel “pi phase shifted” Aharonov-Bohm oscillation in the electrical conductance versus magnetic field. The phase of this electron interferometer can be further switched between 0 and pi by tuning the chemical potential of the electrons using a gate voltage, and the electronic conductance oscillates whenever the circumference of the cylinder encloses an integer number of the Fermi wavelengths. These observations reveal the unique signatures of the so called “spin-helical” Dirac electrons on the surface of a topological insulator. In another example, we realize an atomic interferometer in the momentum space in an Bose-Einstein condensate (BEC) subjected to a Raman optical coupling with time-periodic modulation. This creates a so called “synthetic” spin-orbit-coupling and “dressed” band structures (modified energy-momentum dispersions) for the atoms with two avoided crossings in the band structures acting as two beam splitters in the momentum space. Transporting (using for example gravity) the atomic BEC across this “synthetic” bandstructure with two beam splitters gives rise to the Landau-Zener-Stuckelberg interference, manifesting as an oscillation in the spin polarization versus experimental parameters that varies the phase difference between the two pathways traversed by the atoms in the momentum space.

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Researchers should cite this work as follows:

  • Yong P. Chen (2017), "Quantum Coherent Transport in Atoms & Electrons," https://nanohub.org/resources/26620.

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121 Burton Morgan, Purdue University, West Lafayette, IN

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Quantum Coherent Transport in Atoms & Electrons
  • Quantum Coherent Transport in Atoms & Electrons 1. Quantum Coherent Transport in … 0
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  • Research in Quantum Matter and Device (QMD) Laboratory 2. Research in Quantum Matter and… 61.79512846179513
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  • General remark 3. General remark 129.2625959292626
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  • Outline 4. Outline 341.64164164164163
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  • cold atoms/BEC 5. cold atoms/BEC 431.33133133133134
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  • How to create an atomic beam splitter 6. How to create an atomic beam s… 561.56156156156158
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  • Spin-orbit coupling in quantum gases 7. Spin-orbit coupling in quantum… 674.60794127460792
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  • Synthetic Spin Orbit Coupling (SOC) by Raman 8. Synthetic Spin Orbit Coupling … 705.638972305639
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  • Landau-Zener Transitions: a quantum crossroad 9. Landau-Zener Transitions: a qu… 865.93259926593259
    00:00/00:00
  • Importance of Landau-Zener 10. Importance of Landau-Zener 962.26226226226231
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  • LZ transition for a SO coupled BEC 11. LZ transition for a SO coupled… 983.95061728395069
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  • Tunable Landau-Zener Transition (between SOC dressed bands) 12. Tunable Landau-Zener Transitio… 1071.4381047714383
    00:00/00:00
  • Time-dependent LZ measurements 13. Time-dependent LZ measurements 1112.8461795128462
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  • Landau-Zener beamsplitter twice: Stuckelberg Interference 14. Landau-Zener beamsplitter twic… 1185.3186519853186
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  • Stueckelberg interference 15. Stueckelberg interference 1234.7681014347681
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  • A new-spin-momentum texture! 16. A new-spin-momentum texture! 1360.3269936603269
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  • Observation of Stueckelberg interference in dressed bands 17. Observation of Stueckelberg in… 1431.0643977310645
    00:00/00:00
  • 'Fringe' contrast vs modulation 18. 'Fringe' contrast vs modulatio… 1517.6176176176177
    00:00/00:00
  • Measuring acceleration (proof of principle) 19. Measuring acceleration (proof … 1535.9693026359694
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  • New experiment: quantum quench and coherent atomic spin current 20. New experiment: quantum quench… 1607.4074074074074
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  • Outline 21. Outline 1697.4641307974641
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  • From Quantum Hall Effect (QHE) to Topological Insulator (TI) 22. From Quantum Hall Effect (QHE)… 1753.1865198531866
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  • (3D) Topological Insulator & Topological Surface State 23. (3D) Topological Insulator & T… 1913.0797464130799
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  • Experiment#2 24. Experiment#2 2044.6446446446448
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  • Shubnikov-de Haas (SdH) oscillations 25. Shubnikov-de Haas (SdH) oscill… 2074.2409075742412
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  • Gate tunable effective (cyclotron) mass 26. Gate tunable effective (cyclot… 2099.5328661995331
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  • Gate-tuned weak antilocalization (WAL) and transition to weak localization (WL) 27. Gate-tuned weak antilocalizati… 2123.9906573239909
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  • A Fingerprint: 28. A Fingerprint: 2126.7934601267934
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  • Aharonov-Bohm quantum interference  oscillations (ABO) 29. Aharonov-Bohm quantum interfer… 2127.8611945278612
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  • Alternating pi/0 ABO! 30. Alternating pi/0 ABO! 2346.2462462462463
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  • Another unique transport signature of TI spin-helical surface Dirac fermions 31. Another unique transport signa… 2478.311644978312
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  • Probe TSS & band structures 32. Probe TSS & band structures 2601.0343677010346
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  • TI electronic transport: Rich physics and Potential Device Applications 33. TI electronic transport: Rich … 2683.8838838838842
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  • Majorana (fermion) 34. Majorana (fermion) 2737.1705038371706
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  • Slide credit: J. Ihm 35. Slide credit: J. Ihm 2833.4668001334671
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  • Topological Quantum Matter 36. Topological Quantum Matter 2877.0437103770437
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  • Can we have Topological Thermal Transport? 37. Can we have Topological Therma… 2906.1728395061727
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  • Outline 38. Outline 2963.7303970637304
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  • General remark 39. General remark 2968.8021354688021
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  • Outline 40. Outline 3152.4858191524859
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