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Engineering of Long-Lived Collective DarkStates—Spectral Hole Burning

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Circuit Cavity QED with Macroscopic Solid-State Spin Ensembles

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Abstract

This chapter is based on the following research paper:

  • S. Putz, A. Angerer, D.O. Krimer, R. Glattauer, W.J. Munro, S. Rotter, H.-J. Schmiedmayer, J. Majer, “Spectral hole burning and its application in microwave photonics”. Nat. Photonics, 11(1), 36–39 (2017)

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References

  1. D.O. Krimer, B. Hartl, S. Rotter, Hybrid quantum systems with collectively coupled spin states: Suppression of decoherence through spectral hole burning. Phys. Rev. Lett. 115(3), 033601 (July 2015)

    Google Scholar 

  2. G. Bensky, D. Petrosyan, J. Majer, J. Schmiedmayer, G. Kurizki, Optimizing inhomogeneous spin ensembles for quantum memory. Phys. Rev. A 86(1), 012310 (July 2012)

    Google Scholar 

  3. X. Zhu, Y. Matsuzaki, R. AmsĂĽss, K. Kakuyanagi, T. Shimo-Oka, N. Mizuochi, K. Nemoto, K. Semba, W.J. Munro, S. Saito, Observation of dark states in a superconductor diamond quantum hybrid system. Nat. Commun. 5 (April 2014)

    Google Scholar 

  4. X. Zhang, C.-L. Zou, N. Zhu, F. Marquardt, L. Jiang, H.X. Tang, Magnon dark modes and gradient memory. Nat. Commun. 6, 8914 (Nov 2015)

    Google Scholar 

  5. G. Feher, Electron spin resonance experiments on donors in silicon. I. Electronic structure of donors by the electron nuclear double resonance technique. Phys. Rev. 114(5), 1219–1244 (June 1959)

    Google Scholar 

  6. P.W. Anderson, Absence of diffusion in certain random lattices. Phys. Rev. 109(5), 1492–1505 (Mar 1958)

    Google Scholar 

  7. R.T. Harley, M.J. Henderson, R. M, Macfarlane, Persistent spectral hole burning of colour centres in diamond. J. Phys. C Solid State Phys. 17(8), L233 (1984). ISSN 0022-3719

    Google Scholar 

  8. S. Volker, Hole-burning spectroscopy. Annu. Rev. Phys. Chem. 40(1), 499–530 (1989)

    Google Scholar 

  9. M. Nilsson, L. Rippe, S. Kröll, R. Klieber, D. Suter, Hole-burning techniques for isolation and study of individual hyperfine transitions in inhomogeneously broadened solids demonstrated in pr\(^{3+}\):y\(_{2}\)sio\(_{5}\). Phys. Rev. B 70(21), 214116 (Dec 2004)

    Google Scholar 

  10. R. Purchase, S.Völker, Spectral hole burning: Examples from photosynthesis. Photosynth. Res. 101(2–3), 245–266 (Sept 2009). ISSN 0166-8595

    Google Scholar 

  11. M. Fleischhauer, M.D. Lukin, Quantum memory for photons: Dark-state polaritons. Phys. Rev. A 65(2), 022314 (Jan 2002)

    Google Scholar 

  12. M. Afzelius, I. Usmani, A. Amari, B. Lauritzen, A. Walther, C. Simon, N. Sangouard, J. Minář, H. de Riedmatten, N. Gisin, S. Kröll, Demonstration of atomic frequency comb memory for light with spin-wave storage. Phys. Rev. Lett. 104(4), 040503 (Jan 2010)

    Google Scholar 

  13. de H. Riedmatten, M. Afzelius, M.U. Staudt, C. Simon, N. Gisin, A solid-state light–matter interface at the single-photon level. Nature 456(7223), 773–777 (Dec 2008). ISSN 0028-0836

    Google Scholar 

  14. I. Usmani, C. Clausen, F. Bussières, N. Sangouard, M. Afzelius, N. Gisin, Heralded quantum entanglement between two crystals. Nat. Photonics 6(4), 234–237 (April 2012). ISSN 1749-4885

    Google Scholar 

  15. S. Filipp, M. Göppl, J.M. Fink, M. Baur, R. Bianchetti, L. Steffen, A. Wallraff, Multimode mediated qubit-qubit coupling and dark-state symmetries in circuit quantum electrodynamics. Phys. Rev. A 83(6), 063827 (June 2011)

    Google Scholar 

  16. R.H. Dicke, Coherence in spontaneous radiation processes. Phys. Rev. 93(1), 99–110 (Jan 1954)

    Google Scholar 

  17. R. Amsüss, Ch. Koller, T. Nöbauer, S. Putz, S. Rotter, K. Sandner, S. Schneider, M. Schramböck, G. Steinhauser, H. Ritsch, J. Schmiedmayer, J. Majer, Cavity QED with magnetically coupled collective spin states. Phys. Rev. Lett. 107(6), 060502 (Aug 2011)

    Google Scholar 

  18. P.L. Stanwix, L.M. Pham, J.R. Maze, D. Le Sage, T.K. Yeung, P. Cappellaro, P.R. Hemmer, A. Yacoby, M.D. Lukin, R.L. Walsworth, Coherence of nitrogen-vacancy electronic spin ensembles in diamond. Phys. Rev. B 82(20), 201201 (Nov 2010)

    Google Scholar 

  19. A. Beige, D. Braun, P.L. Knight, Driving atoms into decoherence-free states. New J. Phys. 2(1), 22 (Sept 2000). ISSN 1367-2630

    Google Scholar 

  20. D. Plankensteiner, L. Ostermann, H. Ritsch, C. Genes, Selective protected state preparation of coupled dissipative quantum emitters. Sci. Rep. 5, 16231, (Nov 2015). ISSN 2045–2322

    Google Scholar 

  21. K. Stannigel, P. Rabl, A.S. Sørensen, P. Zoller, M.D. Lukin, Optomechanical transducers for long-distance quantum communication. Phys. Rev. Lett. 105(22), 220501 (Nov 2010)

    Google Scholar 

  22. S. Blum, C. O’Brien, N. Lauk, P. Bushev, M. Fleischhauer, G. Morigi, Interfacing microwave qubits and optical photons via spin ensembles. Phys. Rev. A 91(3), 033834 (Mar 2015)

    Google Scholar 

  23. D.J. Wineland, J.J. Bollinger, W.M. Itano, D.J. Heinzen, Squeezed atomic states and projection noise in spectroscopy. Phys. Rev. A 50(1), 67–88 (July 1994)

    Google Scholar 

  24. G. Hernandez, J. Zhang, Y. Zhu, Vacuum Rabi splitting and intracavity dark state in a cavity-atom system. Phys. Rev. A 76(5), 053814 (Nov 2007)

    Google Scholar 

  25. M. Sabooni, Q. Li, L. Rippe, R.K. Mohan, S. Kröll, Spectral engineering of slow light, cavityline narrowing, and pulse compression. Phys. Rev. Lett. 111(18), 183602 (Oct 2013)

    Google Scholar 

  26. M. Fleischhauer, A. İmamoğlu, J.P. Marangos, Electromagnetically induced transparency: Optics in coherent media. Rev. Mod. Phys. 77(2), 633–673 (July 2005)

    Google Scholar 

  27. M.D. Lukin, M. Fleischhauer, M.O. Scully, V.L. Velichansky, Intracavity electromagnetically induced transparency. Opt. Lett. 23(4), 295 (Feb 1998). ISSN 0146-9592, 1539–4794

    Google Scholar 

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Putz, S. (2017). Engineering of Long-Lived Collective DarkStates—Spectral Hole Burning. In: Circuit Cavity QED with Macroscopic Solid-State Spin Ensembles. Springer Theses. Springer, Cham. https://doi.org/10.1007/978-3-319-66447-7_7

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