概括
本出版商的注释纠正了Optica出版集团的Optics Letters期刊上以前的错误. 这些纠正确保了发表的科学研究和数据的准确性.
科学领域:
- 光学和光子学 在光学和光子学.
背景情况:
- 科学发现的准确传播在光学和光子学研究中至关重要.
- 为了保持出版文献的完整性,需要及时纠正错误.
研究的目的:
- 正式记录和传达以前在光学信件上发表的文章的纠正.
- 确保读者能够获得最准确的研究版本.
主要方法:
- 对最初的出版物进行审查,以查找发现的错误.
- 准备一份正式的出版商说明,详细说明具体的纠正.
主要成果:
- 对Opt.的具体纠正. 拉脱维亚语 拉脱维亚语 拉脱维亚语 48,4173 (2023) 年提供.
- 出版商的说明确保科学记录是准确的.
结论:
- 出版商致力于维护其科学出版物的准确性和可靠性.
- 鼓励读者查阅此注释以获得纠正的信息.
相关概念视频
P-N junction
571
A p-n junction is formed when p-type and n-type semiconductor materials are joined together. At the interface of the p-n junction, holes from the p-side and electrons from the n-side begin to diffuse into the opposite sides due to the concentration gradient. This diffusion of carriers leads to a region around the junction where there are no free charge carriers, known as the depletion region. The charge density within the depletion region for the n-side and p-side can be described by the...
571
Joule-Thomson Effect
4.3K
The Joule-Thomson effect, also known as the Joule-Kelvin effect, describes the temperature change of a fluid when it is forced through a valve or porous plug while keeping it in a thermally insulated environment. This experiment is called a throttling process. This is an important effect widely used in refrigeration and the liquefaction of gases.
This experiment forces high-pressure gas through a throttle valve or a porous plug to a lower-pressure region. The gas expands as it passes through to...
This experiment forces high-pressure gas through a throttle valve or a porous plug to a lower-pressure region. The gas expands as it passes through to...
4.3K
Schottky Barrier Diode
399
Schottky barrier diodes are specialized semiconductor devices characterized by their unique construction. This construction involves combining a metal layer with a moderately doped n-type semiconductor material. This combination leads to the formation of a Schottky barrier, a pivotal element that defines the diode's operational characteristics. The core functionality of Schottky barrier diodes is their capacity to allow current to flow in only one direction due to their distinctive...
399
Mechanisms of Heat Transfer I
4.3K
Just as interesting as the effects of heat transfer on a system are the methods by which the heat transfer occur. Whenever there is a temperature difference, heat transfer occurs. It may occur rapidly, such as through a cooking pan, or slowly, such as through the walls of a picnic ice box. So many processes involve heat transfer that it is hard to imagine a situation where no heat transfer occurs. Yet, every heat transfer takes place by only three methods: conduction, convection, and radiation.
4.3K
Thermosensation
30.5K
Peripheral thermosensation is the perception of external temperature. A change in temperature (on the surface of the skin and other tissues) is detected by a family of temperature-sensitive ion channels called Transient Receptor Potential, or TRP, receptors. These receptors are located on free nerve endings. Those detecting cold temperatures are closer to the surface of the skin than the nerve endings detecting warmth. These thermoTRP channels, while temperature selective, have relatively...
30.5K
Mechanisms of Heat Transfer II
3.3K
In convection, thermal energy is carried by the large-scale flow of matter. Ocean currents and large-scale atmospheric circulation, which result from the buoyancy of warm air and water, transfer hot air from the tropics toward the poles and cold air from the poles toward the tropics. The Earth’s rotation interacts with those flows, causing the observed eastward flow of air in the temperate zones. Convection dominates heat transfer by air, and the amount of available space for the airflow...
3.3K


