in progress t-rex tamutrap sassyer active target det rtc + chemistry radioisotope production

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In Progress T-Rex TAMUTrap SASSYER Active Target Det RTC + chemistry Radioisotope production

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In Progress T-Rex TAMUTrap SASSYER Active Target Det RTC + chemistry Radioisotope production. 16 Faculty 32 students 14 Postdocs Staff ( Research + Ops) 6 TAMU undergraduates 13 REU students. NSCL - ANASEN TRINET collaboration @TRIUMF(beta decays) SAMURAI collaboration at RIKEN - PowerPoint PPT Presentation

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Page 1: In Progress T-Rex TAMUTrap SASSYER Active Target  Det RTC + chemistry Radioisotope production

In Progress

• T-Rex• TAMUTrap• SASSYER• Active Target Det• RTC + chemistry• Radioisotope

production

Page 2: In Progress T-Rex TAMUTrap SASSYER Active Target  Det RTC + chemistry Radioisotope production

16 Faculty

32 students

14 Postdocs

26 Staff ( Research + Ops)

6 TAMU undergraduates

13 REU students

Page 3: In Progress T-Rex TAMUTrap SASSYER Active Target  Det RTC + chemistry Radioisotope production

• NSCL - ANASEN• TRINET collaboration @TRIUMF(beta decays)• SAMURAI collaboration at RIKEN • Jyvaskyla (mass measurements w/ penning

trap)• STAR

Page 4: In Progress T-Rex TAMUTrap SASSYER Active Target  Det RTC + chemistry Radioisotope production

Future research directions• Studies of survival of excited nuclei in the

actinide region with SaSSYER.• Study the complexation of transactinide

homologs with cryptands and crown ethers in "online" experiments

• Studying beta-delayed proton decays of pure Fermi Transitions with TAMUTrap

• Nuclear astrophysics with stable and rare isotope beams.

• Structure of light exotic nuclei. • Clustering phenomena in light and medium

mass nuclei.• Studies of the EOS and Esym• Pionic Fusion• Superallowed β decay studies on Tz=-1

nuclei• GMR as probe of structure and asymmetry• Develop and apply nuclear theory of HI rxn

and GR to determine the next generation energy density functional for nuclei.