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<!-- Deleted image removed: [[File:mona above.jpg|thumb|200px|right|The MoNA Array]] -->
The '''Modular Neutron Array''' ('''MoNA
==
The Modular Neutron Array consists of 144 individual detector modules. Each module is based on a plastic [[scintillator]] measuring 10 cm by 10 cm by 200 cm. This scintillator bar is fitted with light guides on each end that direct the light into one [[photo-multiplier tube]] on each end. Each detector module is wrapped in a light-tight material, allowing the detector array to be arranged in different configurations.
In its original configuration, MoNA consisted of 9 vertical layers of 16 detectors stacked closely, having an active area of 2.0 m wide by 1.6 m tall. In its current arrangement (depicted in the adjacent image), it is stacked in four separate sections of 2, 2, 2, and 3 layers
The detection efficiency of MoNA is maximized for the high-beam velocities that are available at the NSCL's Coupled Cyclotron Facility (CCF). For neutrons ranging from 50 to 250 [[MeV]] in energy, it is designed to have an efficiency of up to 70% and expands the possible coincidence experiments with neutrons to measurements which were previously not feasible. The detector is used in combination with the Sweeper magnet<ref>{{citation | last1=Zelevinsky | first1=V. | last2=Volya | first2=A. | editor1-last=Woehr | editor1-first=A. | editor2-last=Aprahamian | editor2-first=A. | contribution=Continuum Shell Model, Reactions and Giant Resonances | doi=10.1063/1.2187905 | pages=493–497 | publisher=[[American Institute of Physics]] | series=[[AIP Conference Proceedings]] | title=Capture Gamma-Ray Spectroscopy and Related Topics: 12th International Symposium, 4–9 September 2005, Notre Dame, Indiana | volume=819 | year=2006}}</ref><ref>{{citation | last1=Prestemon | first1=S. | last2=Bird | first2=M. D. | last3=Crook | first3=D. G. | last4=DeKamp | first4=J. C. | last5=Eyssa | first5=Y. M. | last6=Morris | first6=L. | last7=Thoennessen | first7=M. | last8=Zeller | first8=A. | date=March 2001 | doi=10.1109/77.920115 | issue=1 | journal=[[IEEE Transactions on Applied Superconductivity]] | pages=1721–1724 | title=Structural design and analysis of a compact sweeper magnet for nuclear physics | volume=11 | bibcode=2001ITAS...11.1721P | display-authors=3}}</ref><ref>{{citation | last1=Toth | first1=J. | last2=Bird | first2=M. D. | last3=Miller | first3=J. R. | last4=Prestemon | first4=S. | last5=DeKamp | first5=J. C. | last6=Morris | first6=L. | last7=Thoennessen | first7=M. | last8=Zeller | first8=A. | date=March 2002 | doi=10.1109/tasc.2002.1018415 | issue=1 | journal=[[IEEE Transactions on Applied Superconductivity]] | pages=341–344 | title=Final design of a compact sweeper magnet for nuclear physics | volume=12 | bibcode=2002ITAS...12..341T | display-authors=3}}</ref><ref>{{citation |last1=Bird |first1=M. D. |last2=Bole |first2=S. |last3=Gundlach |first3=S. |last4=Kenney |first4=S. |last5=Miller |first5=J. |last6=Toth |first6=J. |last7=Zeller |first7=A. |date=June 2004 |doi=10.1109/tasc.2004.829720 |issue=2 |journal=[[IEEE Transactions on Applied Superconductivity]] |pages=564–567 |title=Cryostat Design and Fabrication for the NHMFL/NSCL Sweeper Magnet |volume=14 |bibcode=2004ITAS...14..564B |s2cid=34670655 |display-authors=3}}</ref><ref>{{citation |last1=Bird |first1=M. D. |last2=Kenney |first2=S. J. |last3=Toth |first3=J. |last4=Weijers |first4=H. W. |last5=DeKamp |first5=J. C. |last6=Thoennessen |first6=M. |last7=Zeller |first7=A. F. |date=June 2005 |doi=10.1109/tasc.2005.849553 |issue=2 |journal=[[IEEE Transactions on Applied Superconductivity]] |pages=1252–1254 |title=System Testing and Installation of the NHMFL/NSCL Sweeper Magnet |volume=15 |bibcode=2005ITAS...15.1252B |s2cid=24997693 |display-authors=3}}</ref> and its focal plane detectors for charged particles.<ref>{{citation | first=N. | last=Frank | type=Ph.D. Thesis | title=Spectroscopy of Neutron Unbound States in Neutron Rich Oxygen Isotopes | publisher=[[Michigan State University]] | year=2006}}</ref> In addition,
== History ==
When the NSCL upgraded
Several NSCL users from undergraduate schools were present at the working group meeting and they suggested that the modular nature and simple construction would offer great opportunities to involve undergraduate students.
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The proposals were funded by the NSF in the summer of 2001. Following the detailed design, the first modules of the detector array were delivered in the summer of 2002. During the following year all modules were assembled and tested by undergraduate students at their school,<ref>{{citation |last1=Howes |first1=R. H. |authorlink=Ruth Howes |last2=Baumann |first2=T. |last3=Thoennessen |first3=M. |last4=Brown |first4=J. |last5=DeYoung |first5=P. A. |last6=Finck |first6=J. |last7=Hinnefeld |first7=J. |last8=Kemper |first8=K. W. |last9=Luther |first9=B. |last10=Pancella |first10=P. V. |last11=Peaslee |first11=G. F. |last12=Rogers |first12=W. F. |last13=Tabor |first13=S. |date=February 2005 |doi=10.1119/1.1794758 |issue=2 |journal=[[American Journal of Physics]] |pages=122–126 |title=Fabrication of a modular neutron array: A collaborative approach to undergraduate research |volume=73 |bibcode=2005AmJPh..73..122H |display-authors=3}}</ref> and finally added to form the complete array at the NSCL.
The MoNA collaboration continued after the initial phase of construction and commissioning was concluded [MoNA], and is now using the detector array for experiments,
==
The MoNA Collaboration currently includes physicists from eleven colleges and universities. The project is funded by the [[National Science Foundation]].
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*[[Westmont College]]
The collaboration is committed to involving undergraduates in significant parts of the experimental program at the MoNA facility. Most of the collaboration member institutions are primarily undergraduate schools. Undergraduates helped construct and test MoNA and continue to participate in experiments during runs and through data analysis. It also created intensive summer sessions designed for undergraduates, encouraging students to participate in all phases of experiments, holding several meetings a year that include undergraduate participants, and employing information technology to bring
== References ==
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==External links==
*[http://persweb.wabash.edu/facstaff/brownj/mona/html/default/home.html MoNA homepage]
*[https://inspirehep.net/experiments/1203398 MoNa experiment record] on [[INSPIRE-HEP]]
[[Category:Michigan State University]]
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