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Hybrid Synchrotron Arc: 2 Dipoles per Half Cell J. Scott Berg Advanced Accelerator Group Meeting 28 July 2011.

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Presentation on theme: "Hybrid Synchrotron Arc: 2 Dipoles per Half Cell J. Scott Berg Advanced Accelerator Group Meeting 28 July 2011."— Presentation transcript:

1 Hybrid Synchrotron Arc: 2 Dipoles per Half Cell J. Scott Berg Advanced Accelerator Group Meeting 28 July 2011

2 Basic Structure of Machine Hybrid synchrotron using fixed cold and warm ramped dipoles to get – High average bending field – Extremely fast ramping Accelerate 375 GeV to 750 GeV 8 straights for RF, injection, extraction, etc. 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles2

3 Basic Arc Cell Structure FODO cell, quads split in two – Eventually have sextupole in middle – Currently zero length nothing with drifts around it 75 cm drifts between magnets Cold 8 T dipole Warm ramped dipole, −1.8 to +1.8 T Quadrupoles ramped, maximum pole tip 1.3 T 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles3

4 Basic Arc Cell: Dipole Arrangement ColdD Warm Cold 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles4 ColdD Warm Cold

5 Optimization Process Find closed orbit at 375 GeV with warm dipoles at −1.8 T, 750 GeV with warm dioples at +1.8 T Set tunes to desired values, times of flight equal using quad fields and cold dipole length Minimize excursion with warm dipole length Adjust quadrupole lengths so pole tip fields low enough 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles5

6 Results and Analysis Results look awful, but intentionally non- optimal lattice structure – Should have more dipoles per cell – Probably better with cold dipole near D Look at how excursions, circumference depend on number of arc cells 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles6

7 Ring Circumference (Arcs Only) 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles7

8 Maximum Orbit Excursion 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles8

9 Displacement vs. Tune 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles9

10 Circumference vs. Tune 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles10

11 Results and Analysis: Cold near F Circumference min at 11 cells/superperiod Aperture reduced for more cells Lower aperture for higher horizontal tune – Dependence on vertical tune weaker Shortest circumference for low vertical tune, moderate horizontal tune, vertical most important 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles11

12 Results and Analysis Dipole Arrangement Only first couple results for cold near D Apertures comparable: largest near warm dipole Circumference much shorter when warm near F – Greater excursion in F – F acts as combined-function magnet 28 July 2011J. S. Berg: Fast Ramping, 2 Dipoles12


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