Stable solutions for q【通用3篇】

Stable solutions for q 篇一:Exploring the Benefits of Stable Solutions for q

In today's fast-paced world, finding stable solutions for various challenges has become crucial. One area where stable solutions are particularly valued is in the field of q, which encompasses a wide range of complex problems. In this article, we will explore the benefits of stable solutions for q and how they can contribute to overall success and progress.

First and foremost, stable solutions provide a sense of certainty and reliability. When dealing with intricate problems in q, having a stable solution ensures that the desired outcome can be consistently achieved. This reliability is essential in establishing trust and confidence in the solution, as well as in the overall process. Moreover, stable solutions allow for easier planning and decision-making, as they provide a solid foundation upon which strategies and actions can be built.

Additionally, stable solutions contribute to efficiency and productivity. By having a reliable solution for q, valuable time and resources can be saved. Instead of constantly searching for new methods or experimenting with different approaches, stable solutions provide a tried and tested framework that can be applied consistently. This allows for a more streamlined workflow and enables individuals and organizations to focus their efforts on other important tasks or challenges.

Furthermore, stable solutions foster innovation and growth. When a stable solution is in place, it provides a stable platform for continuous improvement and expansion. With the confidence that a reliable solution brings, individuals and organizations can explore new possibilities and push the boundaries of what is currently known or achievable in the field of q. This promotes innovation and encourages the development of new ideas, ultimately leading to growth and progress.

Lastly, stable solutions for q contribute to long-term sustainability. By having a stable solution in place, individuals and organizations can anticipate and adapt to changes or challenges that may arise in the future. This proactive approach ensures that the solution remains effective and relevant over time, reducing the need for constant modifications or updates. This stability is particularly important in q, where long-term planning and sustainability are key factors for success.

In conclusion, stable solutions for q offer numerous benefits across various aspects. They provide certainty, reliability, efficiency, and productivity, enabling individuals and organizations to achieve their goals more effectively. Additionally, stable solutions foster innovation, growth, and long-term sustainability, ensuring continued success in the field of q. Therefore, it is essential to prioritize the development and implementation of stable solutions in order to overcome challenges and drive progress in q.

Stable solutions for q 篇三

Stable solutions for q(q) bound states with a regularized Breit potential

The Breit interaction contains singular terms which may lead to an instability in quark-antiquark bound state calculations. We regularize the Breit interaction by multiplying the singular terms in momentum space by the form factor μ2/(q2+μ2) such that the interaction is not singular at the origin and the intermediate-and long-range parts of the interaction remain unchanged. The singular terms in the Breit potential find their stable contributions in the calcu

lations after being multiplied by the form factor with different powers. Such a regularized Breit potential with a linear and a relativistically corrected confining potential are applied to the study of qq bound states. The spectra for most familiar mesons are consistently obtained and agree well with the experimental data.

作 者: Jirimutu ZHANG Wei-Ning 作者单位: Jirimutu(Department of Physics, Haerbin Institute of Technology, Haerbin 150006, China)

ZHANG Wei-Ning(Department of Physics, Haerbin Institute of Technology, Haerbin 150006, China;School of Physics and Optoelectronic Technology, Dalian University of Technology, Dalian 116024, China;Center of Theoretical Nuclear Physics, National Laboratory of Heavy Ion Accelerator of Lanzhou, Lanzhou 730000, China)

刊 名:中国物理C(英文版) ISTIC 英文刊名: CHINESE PHYSICS C 年,卷(期): 200933(8) 分类号: O4 关键词: quark model regularized Breit potential meson spectra relativistically corrected confining potential

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