4 Impedance and Collective Effects
177
68. D. Boussard, T. Linnecar: Proc. 2nd Euro. Part. Accel. Conf, Nice, 1990, p. 1560.
69. R.D. Kohaupt: Head Tail Turbulence and the Transverse PETRA Instability, DESY 80/22,
1980.
70. E. Métral: Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons, Proc.
8th EPAC, Paris, France, 3–7 June 2002.
71. A. Burov and T. Zolkin, TMCI with Resonator Wakes, arXiv:1806.07521v2 [physics.acc-ph].
72. G. Rumolo et al., Simulation Study on the Energy Dependence of the TMCI Threshold in the
CERN-SPS, Proceedings of EPAC 2006, Edinburgh, Scotland.
73. Y.H. Chin: User’s guide for new MOSES version 2.0: Mode-coupling Single bunch instability
in an Electron Storage ring, CERN/LEP-TH/88-05, 1988.
74. G. Rumolo, F. Zimmermann: Practical user guide for HEADTAIL, CERN-SL-Note-2002036-AP, 2002.
75. B. Salvant: Impedance Model of the CERN SPS and Aspects of LHC Single-Bunch Stability,
PHD Thesis, Ecole Polytechnique Fédérale de Lausanne (Switzerland), 2010.
76. A. Burov, Nested Head-Tail Vlasov Solver, Phys. Rev. ST Accel. Beams 17, 021007 (2014).
77. N. Mounet, DELPHI: An Analytic Vlasov Solver for Impedance-Driven Modes, CERN
internal HSC meeting, May 07, 2014.
78. E. Métral, G. Rumolo: Simulation Study on the Beneficial Effect of Linear Coupling for the
Transverse Mode Coupling Instability in the CERN Super Proton Synchrotron, Proc. EPAC
2006, Edinburgh, UK, 26–30 June 2006.
79. S. Myers: LEP Note 436, 1983.
80. R. Ruth: CERN LEP-TH/83-22, 1983.
81. R. Ruth: Proc. 12th Intern. Conf. High Energy Accelerators, Fermilab, Batavia, August 11–
16, 1983, p. 389.
82. S. Myers: J. Vancraeynest: CERN LEP-RF/84-13, 1984.
83. S. Myers: CERN LEP-RF/85-22, 1985.
84. S. Myers: Proc. IEEE PAC, Washington D.C., March 16, 1987, p. 503–507.
85. M. Karliner, K. Popov: Theory of a Feedback to Cure Transverse Mode Coupling Instability,
Nucl. Instrum. Meth. A 537 (2005), p. 481–500.
86. E. Métral et al., Destabilising Effect of the LHC Transverse Damper, in Proc. IPAC’18,
Vancouver, BC, Canada, Apr–May 2018, paper THPAF048, pp. 3076-3079. https://doi.org/
10.18429/JACoW-IPAC2018-THPAF048
87. E. Métral et al., Impedance Models, Operational Experience and Expected Limitations,
International Review of the HL-LHC Collimation System, CERN, 11-12/02/2019.
88. E. Métral, A Two-Mode Model to Study the Effect of Space Charge on TMCI in the “LongBunch” regime, Proceedings of IPAC2019, Melbourne, Australia, May 19–24, 2019.
89. E. Métral et al., Space Charge and Transverse Instabilities at the CERN SPS and LHC,
Proceedings of ICAP’18, Key West, Florida, USA, October 20–24, 2018.
90. A. Burov, “Convective Instabilities of Bunched Beams with Space Charge”,
arXiv:1807.04887v4 [physics.acc-ph].
91. E. Métral, Summary of my 3 IPAC19 papers, CERN LIU-SPS BD WG meeting, 17/01/2019.
92. H.G. Hereward: Landau Damping by Non-Linearity, CERN/MPS/DL 69-11, 1969.
93. E. Métral, A. Verdier: Stability Diagrams for Landau Damping with a Beam Collimated at an
Arbitrary Number of Sigmas, CERN-AB-2004-019-ABP.
94. E. Métral, Landau Damping for TMCI: Without vs. With Transverse Damper (TD),
CERN HSC internal meeting, 25/03/2019, https://indico.cern.ch/event/807899/contributions/
3362767/attachments/1816203/2971974/LDforTMCI_EM_25-03-2019_2.pdf
95. E. Métral: Theory of Coupled Landau Damping, Part. Accelerators 62(3–4), p. 259, 1999.
96. E. Métral et al., Simulation Study of the Horizontal Head-Tail Instability Observed at
Injection of the CERN Proton Synchrotron, Proceedings of PAC07, Albuquerque, New
Mexico, USA, June 25–29, 2007.
97. E. Métral, et al.: Destabilising Effect of Linear Coupling in the HERA Proton Ring, Proc. 8th
EPAC, Paris, France, 3–7 June 2002.
177
68. D. Boussard, T. Linnecar: Proc. 2nd Euro. Part. Accel. Conf, Nice, 1990, p. 1560.
69. R.D. Kohaupt: Head Tail Turbulence and the Transverse PETRA Instability, DESY 80/22,
1980.
70. E. Métral: Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons, Proc.
8th EPAC, Paris, France, 3–7 June 2002.
71. A. Burov and T. Zolkin, TMCI with Resonator Wakes, arXiv:1806.07521v2 [physics.acc-ph].
72. G. Rumolo et al., Simulation Study on the Energy Dependence of the TMCI Threshold in the
CERN-SPS, Proceedings of EPAC 2006, Edinburgh, Scotland.
73. Y.H. Chin: User’s guide for new MOSES version 2.0: Mode-coupling Single bunch instability
in an Electron Storage ring, CERN/LEP-TH/88-05, 1988.
74. G. Rumolo, F. Zimmermann: Practical user guide for HEADTAIL, CERN-SL-Note-2002036-AP, 2002.
75. B. Salvant: Impedance Model of the CERN SPS and Aspects of LHC Single-Bunch Stability,
PHD Thesis, Ecole Polytechnique Fédérale de Lausanne (Switzerland), 2010.
76. A. Burov, Nested Head-Tail Vlasov Solver, Phys. Rev. ST Accel. Beams 17, 021007 (2014).
77. N. Mounet, DELPHI: An Analytic Vlasov Solver for Impedance-Driven Modes, CERN
internal HSC meeting, May 07, 2014.
78. E. Métral, G. Rumolo: Simulation Study on the Beneficial Effect of Linear Coupling for the
Transverse Mode Coupling Instability in the CERN Super Proton Synchrotron, Proc. EPAC
2006, Edinburgh, UK, 26–30 June 2006.
79. S. Myers: LEP Note 436, 1983.
80. R. Ruth: CERN LEP-TH/83-22, 1983.
81. R. Ruth: Proc. 12th Intern. Conf. High Energy Accelerators, Fermilab, Batavia, August 11–
16, 1983, p. 389.
82. S. Myers: J. Vancraeynest: CERN LEP-RF/84-13, 1984.
83. S. Myers: CERN LEP-RF/85-22, 1985.
84. S. Myers: Proc. IEEE PAC, Washington D.C., March 16, 1987, p. 503–507.
85. M. Karliner, K. Popov: Theory of a Feedback to Cure Transverse Mode Coupling Instability,
Nucl. Instrum. Meth. A 537 (2005), p. 481–500.
86. E. Métral et al., Destabilising Effect of the LHC Transverse Damper, in Proc. IPAC’18,
Vancouver, BC, Canada, Apr–May 2018, paper THPAF048, pp. 3076-3079. https://doi.org/
10.18429/JACoW-IPAC2018-THPAF048
87. E. Métral et al., Impedance Models, Operational Experience and Expected Limitations,
International Review of the HL-LHC Collimation System, CERN, 11-12/02/2019.
88. E. Métral, A Two-Mode Model to Study the Effect of Space Charge on TMCI in the “LongBunch” regime, Proceedings of IPAC2019, Melbourne, Australia, May 19–24, 2019.
89. E. Métral et al., Space Charge and Transverse Instabilities at the CERN SPS and LHC,
Proceedings of ICAP’18, Key West, Florida, USA, October 20–24, 2018.
90. A. Burov, “Convective Instabilities of Bunched Beams with Space Charge”,
arXiv:1807.04887v4 [physics.acc-ph].
91. E. Métral, Summary of my 3 IPAC19 papers, CERN LIU-SPS BD WG meeting, 17/01/2019.
92. H.G. Hereward: Landau Damping by Non-Linearity, CERN/MPS/DL 69-11, 1969.
93. E. Métral, A. Verdier: Stability Diagrams for Landau Damping with a Beam Collimated at an
Arbitrary Number of Sigmas, CERN-AB-2004-019-ABP.
94. E. Métral, Landau Damping for TMCI: Without vs. With Transverse Damper (TD),
CERN HSC internal meeting, 25/03/2019, https://indico.cern.ch/event/807899/contributions/
3362767/attachments/1816203/2971974/LDforTMCI_EM_25-03-2019_2.pdf
95. E. Métral: Theory of Coupled Landau Damping, Part. Accelerators 62(3–4), p. 259, 1999.
96. E. Métral et al., Simulation Study of the Horizontal Head-Tail Instability Observed at
Injection of the CERN Proton Synchrotron, Proceedings of PAC07, Albuquerque, New
Mexico, USA, June 25–29, 2007.
97. E. Métral, et al.: Destabilising Effect of Linear Coupling in the HERA Proton Ring, Proc. 8th
EPAC, Paris, France, 3–7 June 2002.
