NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES.
Publication
, Journal Article
Bhattacharya, T; Chandrasekharan, S; Gupta, R; Lee, W; Sharpe, S
Published in: Phys. Letts. B
1999
We extend the application of axial Ward identities to calculate $b_A, b_P$ and $b_T$, coefficients that give the mass dependence of the renormalization constants of the corresponding bilinear operators in the quenched theory. The extension relies on using operators with non-degenerate quark masses. It allows a complete determination of the O(a) improvement coefficients for bilinears in the quenched approximation using Ward Identities alone. Only the scale dependent normalization constants $Z_P^0$ (or $Z_S^0$) and $Z_T$ are undetermined. We present results of a pilot numerical study using hadronic correlators.
Duke Scholars
Published In
Phys. Letts. B
Publication Date
1999
Volume
461
Start / End Page
79 / 88
Related Subject Headings
- Nuclear & Particles Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0201 Astronomical and Space Sciences
- 0105 Mathematical Physics
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Bhattacharya, T., Chandrasekharan, S., Gupta, R., Lee, W., & Sharpe, S. (1999). NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES. Phys. Letts. B, 461, 79–88.
Bhattacharya, T., S. Chandrasekharan, R. Gupta, W. Lee, and S. Sharpe. “NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES.” Phys. Letts. B 461 (1999): 79–88.
Bhattacharya T, Chandrasekharan S, Gupta R, Lee W, Sharpe S. NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES. Phys Letts B. 1999;461:79–88.
Bhattacharya, T., et al. “NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES.” Phys. Letts. B, vol. 461, 1999, pp. 79–88.
Bhattacharya T, Chandrasekharan S, Gupta R, Lee W, Sharpe S. NONPERTURBATIVE RENORMALIZATION CONSTANTS USING WARD IDENTITIES. Phys Letts B. 1999;461:79–88.
Published In
Phys. Letts. B
Publication Date
1999
Volume
461
Start / End Page
79 / 88
Related Subject Headings
- Nuclear & Particles Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
- 0201 Astronomical and Space Sciences
- 0105 Mathematical Physics