论文标题

对“对金属表面上超流体超密集的氢簇405-725 K的相过渡温度的评论” [AIP上升6,045111(2016)]”

Response to "Comment on 'Phase transition temperatures of 405-725 K in superfluid ultra-dense hydrogen clusters on metal surfaces' [AIP Advances 6, 045111 (2016)]"

论文作者

Holmlid, Leif, Kotzias, Bernhard

论文摘要

在此邀请的回应中,我们回答了Engelen和Hansen [Arxiv:2207.07844]的所有评论。我们指出,H(0)的超流体和超导特性先前已发表。我们解释了超强物质H(0)形式中共价键合的分子与分子之间的一些差异,并解释了库仑爆炸期间H(0)分子的能量学的某些方面。我们指出,出版物中显示的实验光谱不是离子飞行时间光谱,而是中性飞行时间光谱,其峰值宽度是内部能量学给出的,而不是通过实验因素给出的。我们指出,H(0)尚未测量任何相图。此外,我们指出,rydberg状态是一种氢化状态,因此所有氢原子态均为rydberg状态。 Rydberg国家总是有大量的主要量子数量是一个完全的误解。我们指出,发布了H(0)的QM描述。我们指出,p(0),d(0)和pd(0)中的内部距离已通过旋转光谱在两个出版物的三种不同自旋状态的两个出版物中测量。它们以FM精度在PM范围内测量。

In this invited response we answer all comments by Engelen and Hansen [arXiv:2207.07844]. We point out that the superfluid and superconductive properties of H(0) have been published previously. We explain some differences between covalently bonded molecules and the molecules in the ultradense matter H(0) form, and explain some aspects of the energetics of H(0) molecules during Coulomb explosions. We point out that the experimental spectra shown in our publication are not ion time-of-flight spectra but neutral time-of-flight spectra with the peak width given by the internal energetics and not by experimental factors. We point out that no phase diagram has been measured for H(0). Further we point out that a Rydberg state is a hydrogenic state and thus that all hydrogen atom states are Rydberg states. That Rydberg states always have large principal quantum numbers is a complete misunderstanding. We point out that a QM description of H(0) is published. We point out that the internuclear distances in p(0), D(0) and pD(0) have been measured by rotational spectroscopy in two publications for three different spin states. They are measured in the pm range with fm precision.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源