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51. Progress towards a quiescent, high confinement regime for the all-metal ASDEX Upgrade tokamak

53. The Dependence of Confinement on the Isotope Mass in the Core and the Edge of AUG and JET H-Mode Plasmas

54. The ITER Baseline Scenario at ASDEX Upgrade and TCV

55. Beam-ion transport dependence on Magnetic Perturbations spectrum and plasma helicity in the ASDEX Upgrade tokamak

56. Progress towards a quiescent, high confinement regime for the all-metal ASDEX Upgrade tokamak

58. Study of detachment in future ASDEX Upgrade alternative divertor configurations by means of EMC3-EIRENE

59. On the relation between magnetic perturbations induced toroidal asymmetries and the pump-out effect in ASDEX Upgrade

60. Experimental conditions for suppressing Edge Localised Modes by magnetic perturbations in ASDEX Upgrade

61. Divertor, scrape-off layer and pedestal particle dynamics in the ELM cycle on ASDEX Upgrade

62. Acceleration of beam ions during edge localized modes in the ASDEX Upgrade tokamak

63. Dynamics of the pedestal transport during edge localized mode cycles at ASDEX Upgrade

64. Connecting the global H-mode power threshold to the local radial electric field at ASDEX Upgrade

65. Momentum-space-resolved measurements using oblique electron cyclotron emission for the validation of the quasi-linear theory of electron cyclotron current drive

66. ECRad: An electron cyclotron radiation transport solver for advanced data analysis in thermal and non-thermal fusion plasmas

67. Overview of progress in European medium sized tokamaks towards an integrated plasma-edge/wall solution

68. Validation of high-fidelity ion cyclotron range of frequencies antenna coupling simulations in full 3D geometry against experiments in the ASDEX Upgrade tokamak

69. Near- and far scrape-off layer transport studies in detached, small-ELM ASDEX Upgrade discharges by means of EMC3-EIRENE

70. Dynamics of the pedestal transport during edge localized mode cycles at ASDEX Upgrade

71. Real-time-capable prediction of temperature and density profiles in a tokamak using RAPTOR and a first-principle-based transport model

72. Acceleration of beam ions during edge localized modes in the ASDEX Upgrade tokamak

73. Experimental conditions for suppressing Edge Localised Modes by magnetic perturbations in ASDEX Upgrade

74. On the relation between magnetic perturbations induced toroidal asymmetries and the pump-out effect in ASDEX Upgrade

75. The role of the density profile in the ASDEX-Upgrade pedestal structure

76. Full suppression of Edge Localised Modes with non-axisymmetric magnetic perturbations at low plasma edge collisionality in ASDEX Upgrade

77. Experimental studies of high-confinement mode plasma response to non-axisymmetric magnetic perturbations in ASDEX Upgrade

78. Global performance enhancements via pedestal optimisation on ASDEX Upgrade

79. Pedestal structure and inter-ELM evolution for different main ion species in ASDEX Upgrade

80. Explaining the isotope effect on heat transport in L-mode with the collisional electron-ion energy exchange

81. Three dimensional boundary displacement due to stable ideal kink modes excited by external n = 2 magnetic perturbations

82. Overview of progress in European medium sized tokamaks towards an integrated plasma-edge/wall solution

83. Radiation transport modelling for the interpretation of oblique ECE measurements

85. The ballooning structure of small edge localized modes in AUG and TCV

88. Dynamics of ideal modes and subsequent ELM crashes in 3D tokamak geometry from external magnetic perturbations

89. Real-time plasma state monitoring and supervisory control on TCV

90. ELM and ELM-control Simulations

93. Impact of an Edge Resonant Transport Layer on Fast-Ion Confinement in the ASDEX Upgrade Tokamak

94. The ITER Baseline Scenario Investigated at ASDEX Upgrade

95. ELM-induced cold pulse propagation in ASDEX Upgrade

96. Impact of the 3D Geometry from Non-axisymmetric Magnetic Perturbations on the Local Edge Stability in ASDEX Upgrade

97. Overview of physics studies on ASDEX Upgrade

98. Observation of accelerated beam ion population during edge localized modes in the ASDEX Upgrade tokamak

99. Heat transport driven by the ion temperature gradient and electron temperature gradient instabilities in ASDEX Upgrade H-modes

100. Erratum: Observation of accelerated beam ion population during edge localized modes in the ASDEX Upgrade tokamak (2019 Nucl. Fusion 59 066016)

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