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Review
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papers:
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- Run
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- I
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- Tevatron
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- W
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- Mass
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- measurement:
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- 147.
- Run II Tevatron W Mass measurement: Annual Review: Ann. Rev. Nucl. Part. Sci. 50 (2000) 207.
- Tevatron Inclusive Jet and Di-Jet Production: Annual Review: Ann. Rev. Nucl. Part. Sci. 49 (1999) 633.
- Electroweak Studies at Z Factories: Annual Review: Ann. Rev. Nucl. Part. Sci. 48 (1998) 463.
- QCD Tests at the Tevatron and SPS: Annual Review: Ann. Rev. Nucl. Part. Sci. 43 (1993) 585.
- Hadron Collider Physics: Annual Review: Ann. Rev. Nucl. Part. Sci. 41 (1991) 97.
Discovery of the W bosons (UA1/UA2):
Discovery of the Z boson (UA1/UA2):
Precise measurement of the W mass by UA1:
Precise measurement of the W mass by UA2 (First with an accuracy of 1GeV):
Tevatron Run I (1991-1995) results on the W mass with a precision of 100MeV:
- CDF: Phys. Rev. D64 (2001) 052001.
- D0: Phys. Rev. D58 (1998) 092003.
- D0: Phys. Rev. D58 (1998) 012002.
- D0: Phys. Rev. D62 (2000) 092006.
- D0: Phys. Rev. D66 (2002) 012001.
Pawel Nadolsky, RhicBos, predictions for STAR
- Longitudinal parity-violating asymmetry in W-boson mediated jet pair production (Presentation),
E. Berger and P. Nadolsky, Phys. Rev. D78, 114010 (2008)
Papers about ubar/dbar x-section
Computation of AL from RHICBOS - Bernd
Latex |
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|^Ann.Rev.Nucl.Part.Sci.58.147.2008.pdf] * Run II Tevatron W Mass measurement: [Annual Review: Ann. Rev. Nucl. Part. Sci. 50 (2000) 207. |^Ann.Rev.Nucl.Part.Sci.50.207.2000.pdf] * Tevatron Inclusive Jet and Di-Jet Production: [Annual Review: Ann. Rev. Nucl. Part. Sci. 49 (1999) 633. |^Ann.Rev.Nucl.Part.Sci.49.633.1999.pdf] * Electroweak Studies at Z Factories: [Annual Review: Ann. Rev. Nucl. Part. Sci. 48 (1998) 463. |^Ann.Rev.Nucl.Part.Sci.48.463.1998.pdf] * QCD Tests at the Tevatron and SPS: [Annual Review: Ann. Rev. Nucl. Part. Sci. 43 (1993) 585. |^Ann.Rev.Nucl.Part.Sci.43.585.1993.pdf] * Hadron Collider Physics: [Annual Review: Ann. Rev. Nucl. Part. Sci. 41 (1991) 97. |^Ann.Rev.Nucl.Part.Sci.41.97.1991.pdf] h5. Discovery of the W bosons (UA1/UA2): * UA1: [Phys. Lett. B122 (1983) 103. |^Phys.Lett.B122.103.1983.pdf] * UA2: [Phys. Lett. B122 (1983) 476. |^Phys.Lett.B122.476.1983.pdf] h5. Discovery of the Z boson (UA1/UA2): * UA1: [Phys. Lett. B126 (1983) 398. |^Phys.Lett.B126.398.1983.pdf] * UA2: [Phys. Lett. B129 (1983) 130. |^Phys.Lett.B129.130.1983.pdf] h5. Precise measurement of the W mass by UA1: * UA1: [Z. Phys. C44 (1989) 15. |^Z.Phys.C44.15.1989.pdf] h5. Precise measurement of the W mass by UA2 (First with an accuracy of 1GeV): * UA2: [Phys. Lett. B241 (1990) 150. |^Phys.Lett.B241.150.1990.pdf] h5. Tevatron Run I (1991-1995) results on the W mass with a precision of 100MeV: * CDF: [Phys. Rev. D64 (2001) 052001. |^Phys.Rev.D64.052001.2001.pdf] * D0: [Phys. Rev. D58 (1998) 092003. |^Phys.Rev.D58.092003.2003.pdf] * D0: [Phys. Rev. D58 (1998) 012002. |^Phys.Rev.D58.012002.1998.pdf] * D0: [Phys. Rev. D62 (2000) 092006. |^Phys.Rev.D62.092006.2000.pdf] * D0: [Phys. Rev. D66 (2002) 012001. |^Phys.Rev.D66.012001.2002.pdf] h5. Pawel Nadolsky, RhicBos, predictions for STAR * *Longitudinal parity-violating asymmetry in W-boson mediated jet pair production* ([Presentation|^pavel1.pdf]), \\ [E. Berger and P. Nadolsky, Phys. Rev. D78, 114010 (2008)|^Phys.rev.D78.114010.2008.pdf] h5. Papers about ubar/dbar x-section * [M. Grosse-Perdekamp for PHENIX|http://arxiv.org/pdf/0905.3783v2] h5. Computation of AL from RHICBOS - Bernd \\ \\ {latex} ~\\ \\ L0 interpretation of parity violating $A_L$ for Ws 1) definition of sign of $A_L$: \begin{equation} A_L=\frac{d\sigma^+ - d\sigma^-}{d\sigma^+ + d\sigma^-} \end{equation} \\ Explore limits at $y=0, x_a=x_b=x$ \begin{equation} A^{W+}_L=\frac{u(x)\Delta\bar{d}(x) - \bar{d}(x)\Delta u(x)}{2u(x)\bar{d}(x)}; \;\;\; A^{W-}_L=\frac{d(x)\Delta\bar{u}(x) - \bar{u}(x)\Delta d(x)}{2d(x)\bar{u}(x)}\\ \end{equation} from this follows: \begin{equation} A^{W+}_L=\frac{1}{2}(\frac{\Delta\bar{d}}{\bar{d}}(x) - \frac{\Delta u }{u}(x)); \;\;\; A^{W+}_L<0 \;\; for \;\;\Delta u>0 \end{equation} and: \begin{equation} A^{W-}_L=\frac{1}{2}(\frac{\Delta\bar{u}}{\bar{u}}(x) - \frac{\Delta d }{d}(x)); \;\;\; A^{W-}_L>0 \;\; for \;\;\Delta d<0 \end{equation} {latex} |