[1] SONG H Y, LI H F, LIU X, et al. Studies on different primaries for a nearly-ultimate gamut in a laser display[J]. Optics Express, 2018, 26(18): 23436-23448. doi: 10.1364/OE.26.023436
[2] CHELLAPPAN K V, ERDEN E, UREY H. Laser-based displays: A review[J]. Applied Optics, 2010, F49(25): 79-98.
[3] FAIRCHILD M D. Color appearance models[M]. 3rd ed. WILEY, New Jersey, USA: John Wiley & Sons, Inc, 2013: 120-127.
[4] WRIGHT W D. A trichromatic colorimeter with spectral primaries[J]. Transactions of the Optical Society, 1928, 29(5): 225-242. doi: 10.1088/1475-4878/29/5/302
[5] GUILD J. The colorimetric properties of the spectrum[J]. Philosophical Transactions of the Royal Society of London, 1932, 230(685): 149-187.
[6] STILES W S, BURCH J M. N.P.L. Colour-matching investigation: Final report (1958)[J]. Optica Acta: International Journal of Optics, 2010, 6(1): 1-26.
[7] KRAFT J M, WERNER J S. Aging and the saturation of colors. 1. Colorimetric purity discrimination[J]. Journal of the Optical Society of America, 1999, A16(2): 223-230.
[8] WERNER G, BRAUN W, HAVEL T F, et al. Protein structures in solution by nuclear magnetic resonance and distance geometry[J]. Journal of Molecular Biology, 1987, 196(3): 611-639. doi: 10.1016/0022-2836(87)90037-4
[9] ZAGERS N P, NORREN D. Absorption of the eye lens and macular pigment derived from the reflectance of cone photoreceptors[J]. Journal of the Optical Society of America, 2004, A21(12): 2257-2268.
[10] STOCKMAN A, SHARPE L T. The spectral sensitivities of the middle- and long-wavelength-sensitive cones derived from measurements in observers of known genotype[J]. Vision Research, 2000, 40(13): 1711-1737. doi: 10.1016/S0042-6989(00)00021-3
[11] STOCKMAN A. Cone fundamentals and CIE standards[J]. Current Opinion in Behavioral Sciences, 2019, 30: 87-93. doi: 10.1016/j.cobeha.2019.06.005
[12] POKORNY J, SMITH V C, LUTZE M. Aging of the human lens[J]. Applied Optics, 1987, 26(8): 1437-1440. doi: 10.1364/AO.26.001437
[13] SAID F S, WEALE R A. The variation with age of the spectral transmissivity of the living human crystalline lens[J]. Gerontologia, 1959, 3(4): 213-231. doi: 10.1159/000210900
[14] JUDD D B. Report of US secretariat committee on colorimetry and artificial daylight[C]// Proceedings of the 12th Session of the CIE. Vienna, Austria: CIE, 1951, 1: 1-60.
[15] VOS J J. Colorimetric and photometric properties of a 2° fundamental observer[J]. Color Research and Applications, 1978, 3(3): 125-128. doi: 10.1002/col.5080030309
[16] SHARPE L T, STOCKMAN A, JAGLA W, et al. A luminous efficiency function, VD65* (λ), for daylight adaptation: A correction[J]. Color Research and Applications, 2011, 36(1): 42-46. doi: 10.1002/col.20602
[17] OUYANG M, HUANG S W. Determination of gamut boundary description for multi-primary color displays[J]. Optics Express, 2007, 15(20): 13388-13403. doi: 10.1364/OE.15.013388
[18] MAcADAM D L. The theory of the maximum visual efficiency of colored materials[J]. Journal of the Optical Society of America, 1935, A25(8): 249-252.
[19] MASAOKA K, JIANG F, FAIRCHILD M D, et al. 2D representation of display color gamut[J]. SID International Symposium Digest of Technology Papers, 2018, 78(3): 1048-1051.
[20] POINTER M R. The gamut of real surface colors[J]. Color Research and Applications, 1980, 5(3): 145-155. doi: 10.1002/col.5080050308
[21] PERALES E, LINHARES J M, MASUDA O, et al. Effects of high-color-discrimination capability spectra on color-deficient vision[J]. Journal of the Optical Society of America, 2013, A30(9): 1780-1786.