Frequency Bin Quantum Photonics

By Andrew M Weiner

Electrical and Computer Engineering, Purdue University, West Lafayette, IN

Published on

Abstract

Entanglement is a key resource for quantum information processing. Due to their robustness and unique capability for transmission over long distances, photons have proven to be an indispensable tool for investigation of entanglement and its applications. Discrete frequency bin entanglement – and encoding of quantum information in the frequency domain – is emerging as an active new research area. This form of photon entanglement offers potential both for practical advantages, e.g., compatibility with on-chip generation and fiber transmission, and for more fundamental ones, particularly generation of entangled states with high dimensionality (qudits rather than qubits). In this talk I discuss recent advances in manipulation and measurement of quantum states encoded and entangled in the photonic frequency degree of freedom or hyperentangled in time and frequency degrees of freedom. Although the perspective is primarily experimental, I will also attempt to provide examples of questions and challenges that connect to near-term quantum information.

Bio

Andrew Weiner is best known for pioneering work on programmable femtosecond pulse shaping and ultrafast signal processing. Weiner is a member of the National Academy of Engineering and National Academy of Inventors, was selected as a Department of Defense National Security Science and Engineering Faculty Fellow, and has received the OSA Wood Prize and the IEEE Photonics Society Quantum Electronics Award, among others. He is author of the textbook Ultrafast Optics and recently concluded a six year term as Editor-in-Chief of Optics Express.

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Cite this work

Researchers should cite this work as follows:

  • Andrew M Weiner (2019), "Frequency Bin Quantum Photonics," https://nanohub.org/resources/30622.

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Time

Location

1142 Lawson Hall, Purdue University, West Lafayette, IN

Tags

Frequency Bin Quantum Photonics
  • Frequency Bin Quantum Photonics 1. Frequency Bin Quantum Photonic… 0
    00:00/00:00
  • Credits 2. Credits 100.66733400066734
    00:00/00:00
  • Bits and Qubits 3. Bits and Qubits 197.06373039706375
    00:00/00:00
  • Quantum Entanglement 4. Quantum Entanglement 344.04404404404409
    00:00/00:00
  • Encoding Quantum Information in Photons 5. Encoding Quantum Information i… 454.38772105438773
    00:00/00:00
  • What About Encoding & Entanglement in Optical Frequency? 6. What About Encoding & Entangle… 619.71971971971971
    00:00/00:00
  • Some Classical Background: Femtosecond Pulse Shaping 7. Some Classical Background: Fem… 699.632966299633
    00:00/00:00
  • Programmable Fiber Dispersion Compensation Using a Pulse Shaper 8. Programmable Fiber Dispersion … 795.96262929596264
    00:00/00:00
  • Frequency Bin Entanglement 9. Frequency Bin Entanglement 905.33867200533871
    00:00/00:00
  • Time-Frequency Entangled Photons (Biphotons) 10. Time-Frequency Entangled Photo… 909.10910910910911
    00:00/00:00
  • Biphoton Frequency Combs (via microring resonators) 11. Biphoton Frequency Combs (via … 1083.6836836836837
    00:00/00:00
  • Nonlocal Dispersion Compensation 12. Nonlocal Dispersion Compensati… 1200.4004004004005
    00:00/00:00
  • An entanglement-based wavelenght-multiplexed QCN 13. An entanglement-based waveleng… 1296.8635301968636
    00:00/00:00
  • Biphoton Frequency Comb Entangled State 14. Biphoton Frequency Comb Entang… 1363.9973306639975
    00:00/00:00
  • How to Prove Frequency Bin Entanglement? 15. How to Prove Frequency Bin Ent… 1448.3149816483151
    00:00/00:00
  • Phase Modulation Applied to Frequency Entanglement 16. Phase Modulation Applied to Fr… 1531.4981648314981
    00:00/00:00
  • How to Prove Frequency Bin Entanglement? 17. How to Prove Frequency Bin Ent… 1589.0890890890892
    00:00/00:00
  • Two Dimensional Frequency Bin Entanglement 18. Two Dimensional Frequency Bin … 1640.4404404404404
    00:00/00:00
  • Dispersion Measurement with Biphoton Frequency Comb 19. Dispersion Measurement with Bi… 1703.8705372038705
    00:00/00:00
  • Testing Frequency Bin Entanglement 20. Testing Frequency Bin Entangle… 1763.5301968635304
    00:00/00:00
  • Three-Dimensional Frequency Bin Entanglement [SPDC] 21. Three-Dimensional Frequency Bi… 1814.6146146146148
    00:00/00:00
  • Three-Dimensional Frequency Bin Entanglement [SPDC] 22. Three-Dimensional Frequency Bi… 1858.0580580580581
    00:00/00:00
  • Three-Dimensional Frequency Bin Entanglement [Microring] 23. Three-Dimensional Frequency Bi… 1864.9315982649316
    00:00/00:00
  • Manipulating Frequency Encoded Photons (Gates) 24. Manipulating Frequency Encoded… 1897.8311644978312
    00:00/00:00
  • Quantum state manipulation for frequency encoded photons 25. Quantum state manipulation for… 1920.8208208208209
    00:00/00:00
  • Decomposition of N×N Unitary Operators into 2×2 Variable Beamsplitters 26. Decomposition of N×N Unitary … 1979.2125458792127
    00:00/00:00
  • J. Wang, S. Paesani et al, Science 360, 285 (2018) 27. J. Wang, S. Paesani et al, Sci… 2085.1851851851852
    00:00/00:00
  • Gate Construction for Frequency-Encoded Qubits (Qudits) 28. Gate Construction for Frequenc… 2191.3246579913248
    00:00/00:00
  • High-Fidelity Gates for Frequency Encoded Photons 29. High-Fidelity Gates for Freque… 2340.9409409409409
    00:00/00:00
  • High-Fidelity Gates for Quantum Information Processing 30. High-Fidelity Gates for Quantu… 2386.9536202869535
    00:00/00:00
  • 31. "2 × 2" coupler (frequency be… 2547.7811144477814
    00:00/00:00
  • High-Fidelity Gates for Quantum Information Processing 32. High-Fidelity Gates for Quantu… 2581.0810810810813
    00:00/00:00
  • Coherent Processing of Entangled Frequency-Bin Qubits 33. Coherent Processing of Entangl… 2658.9255922589259
    00:00/00:00
  • Frequency-Encoded, Probabilistic Two Photon Gate 34. Frequency-Encoded, Probabilist… 2783.4167500834169
    00:00/00:00
  • Time-Frequency Hyper-entanglement 35. Time-Frequency Hyper-entanglem… 2929.1624958291627
    00:00/00:00
  • Deterministic 2-Qudit Time-Frequency Gates: Experiments 36. Deterministic 2-Qudit Time-Fre… 3013.2465799132465
    00:00/00:00
  • Testing the Coherence of the Sum Gate 37. Testing the Coherence of the S… 3149.6830163496829
    00:00/00:00
  • Scaling the Sum Gate to 16 × 16 38. Scaling the Sum Gate to 16 × … 3226.9936603269939
    00:00/00:00
  • 4-party, 32-dimensional Greenberger-Horne-Zeilinger (GHZ) states via SUM gate operating on entangled signal-idler pair 39. 4-party, 32-dimensional Greenb… 3285.5522188855525
    00:00/00:00
  • What Are We Interested in Going Forward? 40. What Are We Interested in Goin… 3468.6686686686689
    00:00/00:00
  • Thanks to many students, collaborators, & sponsors! 41. Thanks to many students, colla… 3584.0173506840174
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