The multiple-order line rogue wave solutions method is emp loyed for searching the multiple soliton solutions for the generalized (2 + 1)-dimensional Camassa-Holm-Kadomtsev-Petviashvili (CHKP) equation, which contains first-order, second-order, and third-order waves solutions. At the critical point, the second-order derivative and Hessian matrix for only one point will be investigated and the lump solution has one minimum value. For the case, the lump solution will be shown the bright-dark lump structure and for another case can be present the dark lump structure-two small peaks and one deep hole. Also, the interaction of lump with periodic waves and the interaction between lump and soliton can be obtained by introducing the Hirota forms. I...
Introduction: The multiple Exp-function scheme is employed for searching the multiple soliton soluti...
In this paper, we get certain the lump-trigonometric solutions and rogue waves with predictability o...
In this article, we investigate the lump, soliton, periodic, kink, and rogue waves to the time-fract...
The multiple Exp-function method is employed for seeking the multiple soliton solutions to the gener...
The multiple lump solutions method is employed for the purpose of obtaining multiple soliton solutio...
Under investigation in this paper is the generalized (2+1)-dimensional Konopelchenko-Dubrovsky-Kaup-...
Under investigation in this paper is the generalized Konopelchenko-Dubrovsky-KaupKupershmidt equatio...
Under investigation in this paper is the generalized Konopelchenko-Dubrovsky-KaupKupershmidt equatio...
The multiple rogue wave solutions method is employed for searching the multiple soliton solutions fo...
The multiple rogue wave solutions method is employed for searching the multiple soliton solutions fo...
Under investigation in this paper is the (2 + 1)-dimensional Kadomtsev-PetviashviliBenjamin-Bona-Mah...
With the aid of the binary Hirota polynomial scheme, the bilinear form of the generalized (3 + 1)-di...
This paper deals with M-soliton solution of the (2 + 1)-dimensional variable-coefficient Kadomtsev-P...
This paper deals with M-soliton solution of the (2 + 1)-dimensional variable-coefficient Kadomtsev-P...
Introduction: The multiple Exp-function scheme is employed for searching the multiple soliton soluti...
Introduction: The multiple Exp-function scheme is employed for searching the multiple soliton soluti...
In this paper, we get certain the lump-trigonometric solutions and rogue waves with predictability o...
In this article, we investigate the lump, soliton, periodic, kink, and rogue waves to the time-fract...
The multiple Exp-function method is employed for seeking the multiple soliton solutions to the gener...
The multiple lump solutions method is employed for the purpose of obtaining multiple soliton solutio...
Under investigation in this paper is the generalized (2+1)-dimensional Konopelchenko-Dubrovsky-Kaup-...
Under investigation in this paper is the generalized Konopelchenko-Dubrovsky-KaupKupershmidt equatio...
Under investigation in this paper is the generalized Konopelchenko-Dubrovsky-KaupKupershmidt equatio...
The multiple rogue wave solutions method is employed for searching the multiple soliton solutions fo...
The multiple rogue wave solutions method is employed for searching the multiple soliton solutions fo...
Under investigation in this paper is the (2 + 1)-dimensional Kadomtsev-PetviashviliBenjamin-Bona-Mah...
With the aid of the binary Hirota polynomial scheme, the bilinear form of the generalized (3 + 1)-di...
This paper deals with M-soliton solution of the (2 + 1)-dimensional variable-coefficient Kadomtsev-P...
This paper deals with M-soliton solution of the (2 + 1)-dimensional variable-coefficient Kadomtsev-P...
Introduction: The multiple Exp-function scheme is employed for searching the multiple soliton soluti...
Introduction: The multiple Exp-function scheme is employed for searching the multiple soliton soluti...
In this paper, we get certain the lump-trigonometric solutions and rogue waves with predictability o...
In this article, we investigate the lump, soliton, periodic, kink, and rogue waves to the time-fract...