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We report on a search for direct scalar bottom quark (sbottom) pair production in $p \bar{p}$ collisions at $\sqrt{s}=1.96$~TeV, in events with large missing transverse energy and two jets of hadrons in the final state, where at least one of the jets is required to be identified as originating from a $b$ quark.
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CDF uses a cylindrical coordinate system about the beam axis with polar angle θ \theta and azimuthal angle ϕ \phi . We define transverse energy E T = E sin θ E_{T}=E\ {\rm sin}\theta , transverse momentum p T = p sin θ p_{T}=p\ {\rm sin}\theta , pseudorapidity η = − ln ( tan ( θ 2 ) ) \eta=-{\rm ln(tan(\frac{\theta}{2}))} , and rapidity y = 1 2 ln ( E + p z E − p z ) y=\rm\frac{1}{2}ln(\frac{E+p_{z}}{E-p_{z}}) . The missing transverse energy E / T {\hbox{$E$\kern-6.00006pt\lower-0.43057pt\hbox{/}}}_{T}
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Charge conjugation is implied throughout the paper
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