Difference between revisions of "34ID Beamline Layout"
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== Undulator Sources == | == Undulator Sources == | ||
34ID has two undulators, positioned in tandem along a 5-meter straight section along the ring. Their horizontal directions are separated by 1 & | 34ID has two undulators, positioned in tandem along a 5-meter straight section along the ring. Their horizontal directions are separated by 1 μrad. The upstream undulator produces the outboard beam, which eventually goes to 34ID-C for coherent diffraction imaging experiments. The downstream undulator produces the inboard beam that serves micro-diffraction at the E-hutch. | ||
== 34ID-A == | == 34ID-A == | ||
The first optical enclosure has the following components: | |||
* Front-end exit mask, window, and collimator | |||
* Two sets of white-beam slits, one for each x-ray beam | |||
* A few Bremsstrahlung Collimators | |||
* A white-beam deflection mirror that further deflects the 34ID-C beam by 10 mrad in the outboard direction. The deflection would provide enough separation between the two x-ray beams at the C-station so experiments can be performed there without too much spatial constraints | |||
* A white-beam mask/stop for the outboard deflected/transmitted beam | |||
== 34ID-B == | == 34ID-B == | ||
The second optical enclosure: | |||
* Septum mask at the entrance that separates beam path into two independent pipes | |||
* A monochromator, a polarizer, and a shutter in the outboard beam for C-hutch | |||
== 34ID-C == | == 34ID-C == | ||
* X-ray coherent-diffraction imaging experiment hutch, uses the outboard beam | |||
* Beam transfer pipe for the inboard beam that goes to 34ID-E | |||
The outboard beam stops at the end of this hutch. | |||
== 34ID-D == | == 34ID-D == | ||
The third optical enclosure: | |||
* Monochromator and slits for the inboard beam | |||
* White-beam shutter and mono-beam shutter for the inboard beam | |||
== 34ID-E == | == 34ID-E == | ||
The micro-diffraction experiment hutch | |||
== See Also == | == See Also == |
Latest revision as of 21:47, 18 October 2013
(This article/section is incomplete, please check back again or help expanding it) |
↑ top view | ||||||
Storage Ring Tunnel Wall — ♦ | 34ID-A (FOE) | Beam transport | 34ID-B (SOE) | 34ID-C | 34ID-D (TOE) | 34ID-E |
↓ side view | ||||||
Sector 34ID has two undulator sources and five x-ray enclosures (also called hutches or stations): the first optical enclosure (FOE) 34ID-A, the second optical enclosure (SOE) 34ID-B, the coherent diffraction imaging experiment station 34ID-C, the third optical enclosure (TOE) 34ID-D, and the micro-diffraction station 34ID-E.
Undulator Sources
34ID has two undulators, positioned in tandem along a 5-meter straight section along the ring. Their horizontal directions are separated by 1 μrad. The upstream undulator produces the outboard beam, which eventually goes to 34ID-C for coherent diffraction imaging experiments. The downstream undulator produces the inboard beam that serves micro-diffraction at the E-hutch.
34ID-A
The first optical enclosure has the following components:
- Front-end exit mask, window, and collimator
- Two sets of white-beam slits, one for each x-ray beam
- A few Bremsstrahlung Collimators
- A white-beam deflection mirror that further deflects the 34ID-C beam by 10 mrad in the outboard direction. The deflection would provide enough separation between the two x-ray beams at the C-station so experiments can be performed there without too much spatial constraints
- A white-beam mask/stop for the outboard deflected/transmitted beam
34ID-B
The second optical enclosure:
- Septum mask at the entrance that separates beam path into two independent pipes
- A monochromator, a polarizer, and a shutter in the outboard beam for C-hutch
34ID-C
- X-ray coherent-diffraction imaging experiment hutch, uses the outboard beam
- Beam transfer pipe for the inboard beam that goes to 34ID-E
The outboard beam stops at the end of this hutch.
34ID-D
The third optical enclosure:
- Monochromator and slits for the inboard beam
- White-beam shutter and mono-beam shutter for the inboard beam
34ID-E
The micro-diffraction experiment hutch