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Melting of 3He in a phase-separated solid 3He-4He mixture

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Melting of 3He in a phase-separated solid 3He-4He mixture. / Haley, R. P.; Adams, E. D.
In: Low Temperature Physics, Vol. 23, No. 5-6, 31.05.1997, p. 461-463.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Haley, RP & Adams, ED 1997, 'Melting of 3He in a phase-separated solid 3He-4He mixture', Low Temperature Physics, vol. 23, no. 5-6, pp. 461-463. https://doi.org/10.1063/1.593389

APA

Haley, R. P., & Adams, E. D. (1997). Melting of 3He in a phase-separated solid 3He-4He mixture. Low Temperature Physics, 23(5-6), 461-463. https://doi.org/10.1063/1.593389

Vancouver

Haley RP, Adams ED. Melting of 3He in a phase-separated solid 3He-4He mixture. Low Temperature Physics. 1997 May 31;23(5-6):461-463. doi: 10.1063/1.593389

Author

Haley, R. P. ; Adams, E. D. / Melting of 3He in a phase-separated solid 3He-4He mixture. In: Low Temperature Physics. 1997 ; Vol. 23, No. 5-6. pp. 461-463.

Bibtex

@article{1eed6f5449d949a5888ef8160cc2da63,
title = "Melting of 3He in a phase-separated solid 3He-4He mixture",
abstract = "The melting pressure of the 3He-rich phase, which is formed after phase separation of a mixture of 0.6% 3He in 4He, has been studied in the temperature range 1-150 mK, below the phase-separation temperature Tps, at pressures between 2.78 and 3.56 MPa. Measurements were made with the mixture confined in a silver sinter, and also in an open volume for comparison. An elevation of the melting pressure relative to pure 3He of up to 60 kPa in the sinter cell and 20 kPa in the open-volume cell was observed. Hysteresis between the freezing and melting temperatures was found for both cells, similar to that observed for pure 3He in small pores. The results of Schrenk et al. for heat capacity measurements on a similar system are discussed.",
author = "Haley, {R. P.} and Adams, {E. D.}",
year = "1997",
month = may,
day = "31",
doi = "10.1063/1.593389",
language = "English",
volume = "23",
pages = "461--463",
journal = "Low Temperature Physics",
issn = "1063-777X",
publisher = "AMER INST PHYSICS",
number = "5-6",

}

RIS

TY - JOUR

T1 - Melting of 3He in a phase-separated solid 3He-4He mixture

AU - Haley, R. P.

AU - Adams, E. D.

PY - 1997/5/31

Y1 - 1997/5/31

N2 - The melting pressure of the 3He-rich phase, which is formed after phase separation of a mixture of 0.6% 3He in 4He, has been studied in the temperature range 1-150 mK, below the phase-separation temperature Tps, at pressures between 2.78 and 3.56 MPa. Measurements were made with the mixture confined in a silver sinter, and also in an open volume for comparison. An elevation of the melting pressure relative to pure 3He of up to 60 kPa in the sinter cell and 20 kPa in the open-volume cell was observed. Hysteresis between the freezing and melting temperatures was found for both cells, similar to that observed for pure 3He in small pores. The results of Schrenk et al. for heat capacity measurements on a similar system are discussed.

AB - The melting pressure of the 3He-rich phase, which is formed after phase separation of a mixture of 0.6% 3He in 4He, has been studied in the temperature range 1-150 mK, below the phase-separation temperature Tps, at pressures between 2.78 and 3.56 MPa. Measurements were made with the mixture confined in a silver sinter, and also in an open volume for comparison. An elevation of the melting pressure relative to pure 3He of up to 60 kPa in the sinter cell and 20 kPa in the open-volume cell was observed. Hysteresis between the freezing and melting temperatures was found for both cells, similar to that observed for pure 3He in small pores. The results of Schrenk et al. for heat capacity measurements on a similar system are discussed.

U2 - 10.1063/1.593389

DO - 10.1063/1.593389

M3 - Journal article

AN - SCOPUS:21744458320

VL - 23

SP - 461

EP - 463

JO - Low Temperature Physics

JF - Low Temperature Physics

SN - 1063-777X

IS - 5-6

ER -