3 Quantum Optical Phenomena in Nuclear Resonant Scattering
171
148. M. Borland, Preliminary expected performance characteristics of an APS multi-bend achromat
lattice, white paper, in Technical Report ANL/APS/LS-337, Advanced Photon Source (2014)
149. C.G. Schroer, I. Agapov, W. Brefeld, R. Brinkmann, Y.-Y. Chae, H.-C. Chao, M. Eriksson, J.
Keil, X. Nuel Gavaldà, R. Röhlsberger, O.H. Seeck, M. Sprung, M. Tischer, R. Wanzenberg,
E. Weckert, The ultralow-emittance source project at DESY PETRA IV. J. Synch. Radiat. 25,
1277–1290 (2018)
150. K.-J. Kim, Yu.V. Shvyd’ko, Tunable optical cavity for an x-ray free-electron-laser oscillator.
Phys. Rev. ST Accel. Beams 12, 030703 (2009)
151. R.R. Lindberg, K.-J. Kim, Yu. Shvyd’ko, W.M. Fawley, Performance of the x-ray free-electron
laser oscillator with crystal cavity. Phys. Rev. ST Accel. Beams 14, 010701 (2011)
152. Y. Shvyd’ko, V. Blank, S. Terentyev, Diamond x-ray optics: transparent, resilient, highresolution, and wavefront preserving. MRS Bulletin 42, 437–444 (2017)
153. K.P. Heeg, C.H. Keitel, J. Evers, Inducing and detecting collective population inversions of
Mössbauer nuclei. arXiv:1607.04116 [quant-ph] (2016)
154. B.L. Bax, G.E. Maciel Hawkins, N.M. Szeverenyi, Two-dimensional NMR spectroscopy, in
Magnetic Resonance, ed. by L. Petrakis, J.P. Fraissard, vol. 124 of NATO ASI series (Springer,
1984)
155. M. Cho, Two-Dimensional Optical Spectroscopy (CRC Press, 2009)
156. S. Doniach, Fourth-generation X-ray sources: some possible applications to biology. J. Sync.
Rad. 7, 116–120 (2000)
157. L. von der Wense, B. Seiferle, M. Laatiaoui, J.B. Neumayr, H.J. Maier, H.-F. Wirth, C. Mokry,
J. Runke, K. Eberhardt, C.E. Düllmann, N.G. Trautmann, Peter G. Thirolf, Direct detection
of the 229 Th nuclear clock transition. Nature 533, 47 (2016)
158. V.V. Flambaum, Variation of fundamental constants. AIP Conf. Proc. 869, 29–36 (2006)
159. W.G. Rellergert, D. DeMille, R.R. Greco, M.P. Hehlen, J.R. Torgerson, E.R. Hudson, Constraining the evolution of the fundamental constants with a solid-state optical frequency reference based on the 229 Th nucleus. Phys. Rev. Lett. 104, 200802 (2010)
160. W.-T. Liao, A. Pálffy, C.H. Keitel, Nuclear coherent population transfer with x-ray laser
pulses. Phys. Lett. B 705, 134–138 (2011)
161. W.-T. Liao, A. Pálffy, C.H. Keitel, Three-beam setup for coherently controlling nuclear-state
population. Phys. Rev. C 87, 054609 (2013)
162. T.J. Bürvenich, J. Evers, Christoph H. Keitel, Nuclear quantum optics with x-ray laser pulses.
Phys. Rev. Lett. 96, 142501 (2006)
163. J. Haber, J. Gollwitzer, S. Francoual, M. Tolkiehn, J. Strempfer, R. Röhlsberger, Spectral
control of an x-ray L-edge transition via a thin-film cavity. Phys. Rev. Lett. 122, 123608
(2019)
171
148. M. Borland, Preliminary expected performance characteristics of an APS multi-bend achromat
lattice, white paper, in Technical Report ANL/APS/LS-337, Advanced Photon Source (2014)
149. C.G. Schroer, I. Agapov, W. Brefeld, R. Brinkmann, Y.-Y. Chae, H.-C. Chao, M. Eriksson, J.
Keil, X. Nuel Gavaldà, R. Röhlsberger, O.H. Seeck, M. Sprung, M. Tischer, R. Wanzenberg,
E. Weckert, The ultralow-emittance source project at DESY PETRA IV. J. Synch. Radiat. 25,
1277–1290 (2018)
150. K.-J. Kim, Yu.V. Shvyd’ko, Tunable optical cavity for an x-ray free-electron-laser oscillator.
Phys. Rev. ST Accel. Beams 12, 030703 (2009)
151. R.R. Lindberg, K.-J. Kim, Yu. Shvyd’ko, W.M. Fawley, Performance of the x-ray free-electron
laser oscillator with crystal cavity. Phys. Rev. ST Accel. Beams 14, 010701 (2011)
152. Y. Shvyd’ko, V. Blank, S. Terentyev, Diamond x-ray optics: transparent, resilient, highresolution, and wavefront preserving. MRS Bulletin 42, 437–444 (2017)
153. K.P. Heeg, C.H. Keitel, J. Evers, Inducing and detecting collective population inversions of
Mössbauer nuclei. arXiv:1607.04116 [quant-ph] (2016)
154. B.L. Bax, G.E. Maciel Hawkins, N.M. Szeverenyi, Two-dimensional NMR spectroscopy, in
Magnetic Resonance, ed. by L. Petrakis, J.P. Fraissard, vol. 124 of NATO ASI series (Springer,
1984)
155. M. Cho, Two-Dimensional Optical Spectroscopy (CRC Press, 2009)
156. S. Doniach, Fourth-generation X-ray sources: some possible applications to biology. J. Sync.
Rad. 7, 116–120 (2000)
157. L. von der Wense, B. Seiferle, M. Laatiaoui, J.B. Neumayr, H.J. Maier, H.-F. Wirth, C. Mokry,
J. Runke, K. Eberhardt, C.E. Düllmann, N.G. Trautmann, Peter G. Thirolf, Direct detection
of the 229 Th nuclear clock transition. Nature 533, 47 (2016)
158. V.V. Flambaum, Variation of fundamental constants. AIP Conf. Proc. 869, 29–36 (2006)
159. W.G. Rellergert, D. DeMille, R.R. Greco, M.P. Hehlen, J.R. Torgerson, E.R. Hudson, Constraining the evolution of the fundamental constants with a solid-state optical frequency reference based on the 229 Th nucleus. Phys. Rev. Lett. 104, 200802 (2010)
160. W.-T. Liao, A. Pálffy, C.H. Keitel, Nuclear coherent population transfer with x-ray laser
pulses. Phys. Lett. B 705, 134–138 (2011)
161. W.-T. Liao, A. Pálffy, C.H. Keitel, Three-beam setup for coherently controlling nuclear-state
population. Phys. Rev. C 87, 054609 (2013)
162. T.J. Bürvenich, J. Evers, Christoph H. Keitel, Nuclear quantum optics with x-ray laser pulses.
Phys. Rev. Lett. 96, 142501 (2006)
163. J. Haber, J. Gollwitzer, S. Francoual, M. Tolkiehn, J. Strempfer, R. Röhlsberger, Spectral
control of an x-ray L-edge transition via a thin-film cavity. Phys. Rev. Lett. 122, 123608
(2019)
